{
  "proteins": [
    {"id": 1, "accession": "PB24UZ", "plasticdb_id": "00001", "legacy_id": "00001", "visibility": "public", "name": "Cutinase g9562.t1", "database_name": null, "gene": "g9562", "genbank_id": null, "sequence": "MKFFTAITLFTALVAGAPLGMEELETRQSSTSTDLERGSSSNCPSAILIFARGSTEIGNMGSSVGPALSGALSQKVRGIWVQGVGGPYDAALGDNALPRGSSSSAIAEGVRLFKLAKSKCPNASVVAGGYSQGAALIAAAISDLDSSTRDQVKGAALFGYTQNKQNNGRIPNYPADRTKVYCAVGDLVCEGLLIVAPPHLTYNDEARGEAADFLASKV", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Clonostachys rosea", "plastics": "PCL; PET", "result": "positive; positive", "methods": "clear_zone; uv_vis", "substrate_form": "amorphous_film,powder", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 1, "paper_citation": "Gambarini, V., Pavlov, N., Young, P., Dawes, S., Auffret, A., Kingsbury, J. M., Donaldson, L. A., Smith, D. A., Weaver, L., Pantos, O., Handley, K. M., & Lear, G. (2025). Molecular mechanisms of plastic biodegradation by the fungus Clonostachys rosea. mBio. https://doi.org/10.1128/mbio.00335-25", "paper_doi": "10.1128/mbio.00335-25", "paper_year": 2025, "kind": "wild_type", "parent_accession": null, "seq_id": "PB24UZ"},
    {"id": 2, "accession": "PBNH5N", "plasticdb_id": "00002", "legacy_id": "00002", "visibility": "public", "name": "Cutinase g16887.t1", "database_name": null, "gene": "g16887", "genbank_id": null, "sequence": "MPSLIVMAGLARLLVSGTLAAGLGAYNVDPNSVSVSGLSAGGFMAAQLGVAYSDTFKTGFGIFAGGPYDCARNQLYSSCMNNQNPSITKPVANMQSWSGNQIDPLANLQSRQIYMQVGSADRTVGPKPMNQLKAQLANFDDSSRVSFVTTVGAAHVFPTDFDGSGNNACGETRSPYISNCGYDGAGAVLKWMYGDLVPRNNGQLSGTLLSFSQTGTYGASGMDSTGYIYVPQACQGGSSVCKLHVALHGCAQSYGQIGAKFINNSGYNKWADTNNIIIHYPQAKTDYSVHPVWGGLILNNPNACFDWVGWYGSNADQKGGVQVQALVNQVNQITSGYTG", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Clonostachys rosea", "plastics": "PCL; PET", "result": "positive; negative", "methods": "clear_zone; uv_vis", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 1, "paper_citation": "Gambarini, V., Pavlov, N., Young, P., Dawes, S., Auffret, A., Kingsbury, J. M., Donaldson, L. A., Smith, D. A., Weaver, L., Pantos, O., Handley, K. M., & Lear, G. (2025). Molecular mechanisms of plastic biodegradation by the fungus Clonostachys rosea. mBio. https://doi.org/10.1128/mbio.00335-25", "paper_doi": "10.1128/mbio.00335-25", "paper_year": 2025, "kind": "wild_type", "parent_accession": null, "seq_id": "PBNH5N"},
    {"id": 3, "accession": "PBFCTW", "plasticdb_id": "00003", "legacy_id": "00003", "visibility": "public", "name": "PETase", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPSSRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWDSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSRNAKQFLEINGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTRVSDFRTANCS", "has_signal_peptide": null, "uniprot_accession": "A0A0K8P6T7", "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": "5xfy", "pdb_resolution": 1.4, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2017-04-11", "source_microorganism": "Pseudideonella sakaiensis", "plastics": "PET", "result": "positive", "methods": "enzyme_assay,hplc,sem", "substrate_form": "amorphous_film,crystalline_film,model_substrate", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016, "kind": "wild_type", "parent_accession": null, "seq_id": "PBFCTW"},
    {"id": 4, "accession": "PB6JCU", "plasticdb_id": "00004", "legacy_id": "00004", "visibility": "public", "name": "LCC", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELDNASHFAPNSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALSDFRTNNRHCQ", "has_signal_peptide": null, "uniprot_accession": "G9BY57", "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": "4eb0", "pdb_resolution": 1.5, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2012-03-23", "source_microorganism": "uncultured bacterium", "plastics": "PET", "result": "positive", "methods": "enzyme_assay,hplc", "substrate_form": "amorphous_film,crystalline_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016, "kind": "wild_type", "parent_accession": null, "seq_id": "PB6JCU"},
    {"id": 5, "accession": "PBRE2B", "plasticdb_id": "00005", "legacy_id": "00005", "visibility": "public", "name": "Cut190", "database_name": null, "gene": null, "genbank_id": "BAO42836.1", "sequence": "MRIRRQAGTGARASMARAIGVMTTALAVLVGAVGGVAGAEVSTAQDNPYERGPDPTEDSIEAIRGPFSVATERVSSFASGFGGGTIYYPRETDEGTFGAVAVAPGFTASQGSMSWYGERVASQGFIVFTIDTNTRLDQPGQRGRQLLAALDYLVERSDRKVRERLDPNRLAVMGHSMGGGGSLEATVMRPSLKASIPLTPWNLDKTWGQVQVPTFIIGAELDTIASVRTHAKPFYESLPSSLPKAYMELDGATHFAPNIPNTTIAKYVISWLKRFVDEDTRYSQFLCPNPTDRAIEEYRSTCPY", "has_signal_peptide": null, "uniprot_accession": "W0TJ64", "uniprot_protein_name": "Cutinase", "ec_number": null, "uniprot_go_terms": "[{\"id\": \"GO:0052689\", \"aspect\": \"F:carboxylic ester hydrolase activity\", \"evidence\": \"IEA:UniProtKB-ARBA\"}, {\"id\": \"GO:0046872\", \"aspect\": \"F:metal ion binding\", \"evidence\": \"IEA:UniProtKB-KW\"}]", "pdb_id": "4wfi", "pdb_resolution": 1.446, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2014-09-15", "source_microorganism": "Saccharomonospora viridis", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "wild_type", "parent_accession": null, "seq_id": "PBRE2B"},
    {"id": 6, "accession": "PBZ2EY", "plasticdb_id": "00006", "legacy_id": "00006", "visibility": "public", "name": "MHETase", "database_name": null, "gene": "ISF6_0224", "genbank_id": "GAP38911.1", "sequence": "MQTTVTTMLLASVALAACAGGGSTPLPLPQQQPPQQEPPPPPVPLASRAACEALKDGNGDMVWPNAATVVEVAAWRDAAPATASAAALPEHCEVSGAIAKRTGIDGYPYEIKFRLRMPAEWNGRFFMEGGSGTNGSLSAATGSIGGGQIASALSRNFATIATDGGHDNAVNDNPDALGTVAFGLDPQARLDMGYNSYDQVTQAGKAAVARFYGRAADKSYFIGCSEGGREGMMLSQRFPSHYDGIVAGAPGYQLPKAGISGAWTTQSLAPAAVGLDAQGVPLINKSFSDADLHLLSQAILGTCDALDGLADGIVDNYRACQAAFDPATAANPANGQALQCVGAKTADCLSPVQVTAIKRAMAGPVNSAGTPLYNRWAWDAGMSGLSGTTYNQGWRSWWLGSFNSSANNAQRVSGFSARSWLVDFATPPEPMPMTQVAARMMKFDFDIDPLKIWATSGQFTQSSMDWHGATSTDLAAFRDRGGKMILYHGMSDAAFSALDTADYYERLGAAMPGAAGFARLFLVPGMNHCSGGPGTDRFDMLTPLVAWVERGEAPDQISAWSGTPGYFGVAARTRPLCPYPQIARYKGSGDINTEANFACAAPP", "has_signal_peptide": null, "uniprot_accession": "A0A0K8P8E7", "uniprot_protein_name": "Mono(2-hydroxyethyl) terephthalate hydrolase", "ec_number": "3.1.1.102", "uniprot_go_terms": "[{\"id\": \"GO:0009279\", \"aspect\": \"C:cell outer membrane\", \"evidence\": \"IEA:UniProtKB-SubCell\"}, {\"id\": \"GO:0052689\", \"aspect\": \"F:carboxylic ester hydrolase activity\", \"evidence\": \"IDA:UniProtKB\"}, {\"id\": \"GO:0046872\", \"aspect\": \"F:metal ion binding\", \"evidence\": \"IEA:UniProtKB-KW\"}, {\"id\": \"GO:0042178\", \"aspect\": \"P:xenobiotic catabolic process\", \"evidence\": \"IDA:UniProtKB\"}]", "pdb_id": "6jtt", "pdb_resolution": 2.51, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2019-04-12", "source_microorganism": "Pseudideonella sakaiensis", "plastics": "PET", "result": "negative", "methods": "enzyme_assay", "substrate_form": "amorphous_film,model_substrate", "n_kinetic_measurements": 1, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016, "kind": "wild_type", "parent_accession": null, "seq_id": "PBZ2EY"},
    {"id": 7, "accession": "PBERS5", "plasticdb_id": "00007", "legacy_id": "00007", "visibility": "public", "name": "TfH", "database_name": null, "gene": null, "genbank_id": null, "sequence": null, "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Thermobifida fusca", "plastics": "PET", "result": "positive", "methods": "enzyme_assay", "substrate_form": "amorphous_film,crystalline_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016, "kind": "wild_type", "parent_accession": null, "seq_id": "PBERS5"},
    {"id": 8, "accession": "PBDPN7", "plasticdb_id": "00008", "legacy_id": "00008", "visibility": "public", "name": "FsC", "database_name": null, "gene": null, "genbank_id": null, "sequence": null, "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Fusarium solani", "plastics": "PET", "result": "positive", "methods": "enzyme_assay", "substrate_form": "amorphous_film,crystalline_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016, "kind": "wild_type", "parent_accession": null, "seq_id": "PBDPN7"},
    {"id": 1, "accession": "PBVPYT", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "FAST-PETase", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPESRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWHSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSQNAKQFLEIKGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": "8J45", "pdb_resolution": 1.49, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2023-04-19", "source_microorganism": "Pseudideonella sakaiensis", "plastics": "PET", "result": "positive", "methods": "afm,dsc,hplc,sem,weight_loss", "substrate_form": "amorphous_film,crystalline_film,whole_polymer", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PBFCTW", "seq_id": "PBVPYT"},
    {"id": 2, "accession": "PB6CC8", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "ThermoPETase", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPESRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWHSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSRNAKQFLEINGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Pseudideonella sakaiensis", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PBFCTW", "seq_id": "PB6CC8"},
    {"id": 3, "accession": "PBN74C", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "DuraPETase", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTFDYPSSRSSQQMAALRQVASLNGDSSSPIYGKVDTARMGVMGHSMGGGASLRSAANNPSLKAAIPQAPWDSQTNFSSVTVPTLIFACENDSIAPVNSHALPIYDSMSRNAKQFLEINGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": "6KY5", "pdb_resolution": 1.631, "pdb_method": "X-RAY DIFFRACTION", "pdb_deposition_date": "2019-09-16", "source_microorganism": "Pseudideonella sakaiensis", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PBFCTW", "seq_id": "PBN74C"},
    {"id": 4, "accession": "PBR42U", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "ICCM", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELCNASHIAPMSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALCDFRTNNRHCQ", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "uncultured bacterium", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PB6JCU", "seq_id": "PBR42U"},
    {"id": 5, "accession": "PB6TK6", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "LCC D238K", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELKNASHFAPNSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALSDFRTNNRHCQ", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "uncultured bacterium", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PB6JCU", "seq_id": "PB6TK6"},
    {"id": 6, "accession": "PBBJHM", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "Cut190 D250K", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MRIRRQAGTGARASMARAIGVMTTALAVLVGAVGGVAGAEVSTAQDNPYERGPDPTEDSIEAIRGPFSVATERVSSFASGFGGGTIYYPRETDEGTFGAVAVAPGFTASQGSMSWYGERVASQGFIVFTIDTNTRLDQPGQRGRQLLAALDYLVERSDRKVRERLDPNRLAVMGHSMGGGGSLEATVMRPSLKASIPLTPWNLDKTWGQVQVPTFIIGAELDTIASVRTHAKPFYESLPSSLPKAYMELKGATHFAPNIPNTTIAKYVISWLKRFVDEDTRYSQFLCPNPTDRAIEEYRSTCPY", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "Saccharomonospora viridis", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PBRE2B", "seq_id": "PBBJHM"},
    {"id": 7, "accession": "PBZQ49", "plasticdb_id": null, "legacy_id": null, "visibility": "public", "name": "ICCM C238K/C283S", "database_name": null, "gene": null, "genbank_id": null, "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELKNASHIAPMSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALSDFRTNNRHCQ", "has_signal_peptide": null, "uniprot_accession": null, "uniprot_protein_name": null, "ec_number": null, "uniprot_go_terms": null, "pdb_id": null, "pdb_resolution": null, "pdb_method": null, "pdb_deposition_date": null, "source_microorganism": "uncultured bacterium", "plastics": "PET", "result": "positive", "methods": "hplc", "substrate_form": "amorphous_film", "n_kinetic_measurements": 0, "best_kcat_km": null, "best_kcat_km_unit": null, "paper_id": 2, "paper_citation": "Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022). Machine learning-aided engineering of hydrolases for PET depolymerization. Nature, 604(7907), 662-667.", "paper_doi": "10.1038/s41586-022-04599-z", "paper_year": 2022, "kind": "engineered", "parent_accession": "PB6JCU", "seq_id": "PBZQ49"}
  ],
  "protein_variants": [
    {"id": 1, "parent_plasticdb_id": "00003", "parent_protein_id": 3, "variant_name": "FAST-PETase", "variant_type": "engineered", "description": "Functional, active, stable and tolerant PETase: five mutations vs WT PETase (S121E/D186H/R224Q/N233K/R280A). Highest overall PET-hydrolytic activity at 30-50 C of all enzymes tested; degrades untreated postconsumer PET completely within 1 week at 50 C.", "mutations": "S121E; D186H; R224Q; N233K; R280A", "engineering_method": "machine learning (MutCompute) guided design", "performance": "At 40 and 50 C, 2.4- and 38-fold higher activity than ThermoPETase; releases 33.8 mM PET monomers from amorphous gf-PET in 96 h at 50 C (highest of all mutants/temperatures tested).", "kinetics": null, "properties": null, "accession": "PBVPYT", "seq_id": "PBVPYT", "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPESRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWHSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSQNAKQFLEIKGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS"},
    {"id": 2, "parent_plasticdb_id": "00003", "parent_protein_id": 3, "variant_name": "ThermoPETase", "variant_type": "engineered", "description": "Thermostabilized PETase scaffold (S121E/D186H/R280A) used as the background for FAST-PETase.", "mutations": "S121E; D186H; R280A", "engineering_method": "rational protein engineering (Son et al. 2019)", "performance": "Higher thermostability than WT PETase; FAST-PETase (built on this scaffold) shows 2.4- and 38-fold higher activity at 40 and 50 C.", "kinetics": null, "properties": null, "accession": "PB6CC8", "seq_id": "PB6CC8", "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPESRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWHSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSRNAKQFLEINGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS"},
    {"id": 3, "parent_plasticdb_id": "00003", "parent_protein_id": 3, "variant_name": "DuraPETase", "variant_type": "engineered", "description": "Computationally redesigned durable PETase scaffold (10 mutations).", "mutations": "L117F; Q119Y; T140D; W159H; G165A; I168R; A180I; S188Q; S214H; R280A", "engineering_method": "computational redesign (GRAPE strategy, Cui et al. 2021)", "performance": "High thermostability but relatively low activity at mild temperatures (30-50 C).", "kinetics": null, "properties": null, "accession": "PBN74C", "seq_id": "PBN74C", "sequence": "MNFPRASRLMQAAVLGGLMAVSAAATAQTNPYARGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTFDYPSSRSSQQMAALRQVASLNGDSSSPIYGKVDTARMGVMGHSMGGGASLRSAANNPSLKAAIPQAPWDSQTNFSSVTVPTLIFACENDSIAPVNSHALPIYDSMSRNAKQFLEINGGSHSCANSGNSNQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTAVSDFRTANCS"},
    {"id": 4, "parent_plasticdb_id": "00004", "parent_protein_id": 4, "variant_name": "ICCM", "variant_type": "engineered", "description": "Engineered LCC (F243I/D238C/S283C/N246M) - the most active PET-hydrolysing LCC variant reported by Tournier et al.; a disulfide-bridge stabilized, benchmark thermophilic PET depolymerase.", "mutations": "D238C; F243I; N246M; S283C", "engineering_method": "rational engineering (Tournier et al. 2020)", "performance": "Optimum near 72 C; at its optimum still 1.5-fold lower than FAST-PETase at 50 C on pc-PET.", "kinetics": null, "properties": null, "accession": "PBR42U", "seq_id": "PBR42U", "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELCNASHIAPMSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALCDFRTNNRHCQ"},
    {"id": 5, "parent_plasticdb_id": "00004", "parent_protein_id": 4, "variant_name": "LCC D238K", "variant_type": "engineered", "description": "Lysine-mutation (LM) variant of LCC introducing the N233K-equivalent lysine mutation.", "mutations": "D238K", "engineering_method": "site-directed mutagenesis (lysine mutation, portability test)", "performance": "Tm increased ~7 C over WT LCC; higher gf-PET activity than WT LCC.", "kinetics": null, "properties": "[{\"optimal_temperature\": null, \"optimal_ph\": null, \"tm\": 96.277, \"t50\": null, \"half_life\": null, \"half_life_temperature\": null, \"assay_notes\": \"Tm ~96.3 C by DSC, +7 C vs WT LCC (Fig. 2a)\"}]", "accession": "PB6TK6", "seq_id": "PB6TK6", "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELKNASHFAPNSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALSDFRTNNRHCQ"},
    {"id": 6, "parent_plasticdb_id": "00005", "parent_protein_id": 5, "variant_name": "Cut190 D250K", "variant_type": "engineered", "description": "Lysine-mutation (LM) variant of Cut190.", "mutations": "D250K", "engineering_method": "site-directed mutagenesis (lysine mutation, portability test)", "performance": "Tm increased ~7 C over WT Cut190; higher gf-PET activity than WT Cut190.", "kinetics": null, "properties": "[{\"optimal_temperature\": null, \"optimal_ph\": null, \"tm\": 62.527, \"t50\": null, \"half_life\": null, \"half_life_temperature\": null, \"assay_notes\": \"Tm ~62.5 C by DSC, +7 C vs WT Cut190 (Fig. 2a)\"}]", "accession": "PBBJHM", "seq_id": "PBBJHM", "sequence": "MRIRRQAGTGARASMARAIGVMTTALAVLVGAVGGVAGAEVSTAQDNPYERGPDPTEDSIEAIRGPFSVATERVSSFASGFGGGTIYYPRETDEGTFGAVAVAPGFTASQGSMSWYGERVASQGFIVFTIDTNTRLDQPGQRGRQLLAALDYLVERSDRKVRERLDPNRLAVMGHSMGGGGSLEATVMRPSLKASIPLTPWNLDKTWGQVQVPTFIIGAELDTIASVRTHAKPFYESLPSSLPKAYMELKGATHFAPNIPNTTIAKYVISWLKRFVDEDTRYSQFLCPNPTDRAIEEYRSTCPY"},
    {"id": 7, "parent_plasticdb_id": "00004", "parent_protein_id": 4, "variant_name": "ICCM C238K/C283S", "variant_type": "engineered", "description": "Lysine-mutation variant built on ICCM: C238K reverts the ICCM D238C disulfide cysteine to lysine and C283S reverts S283C to serine (net vs WT LCC: D238K/F243I/N246M).", "mutations": "D238K; F243I; N246M", "engineering_method": "site-directed mutagenesis (lysine mutation, portability test)", "performance": "Tm 96.3 C (-3.7 C vs ICCM) but higher gf-PET activity than ICCM.", "kinetics": null, "properties": "[{\"optimal_temperature\": null, \"optimal_ph\": null, \"tm\": 96.337, \"t50\": null, \"half_life\": null, \"half_life_temperature\": null, \"assay_notes\": \"Tm 96.3 C by DSC, -3.7 C vs ICCM (Fig. 2a)\"}]", "accession": "PBZQ49", "seq_id": "PBZQ49", "sequence": "MDGVLWRVRTAALMAALLALAAWALVWASPSVEAQSNPYQRGPNPTRSALTADGPFSVATYTVSRLSVSGFGGGVIYYPTGTSLTFGGIAMSPGYTADASSLAWLGRRLASHGFVVLVINTNSRFDYPDSRASQLSAALNYLRTSSPSAVRARLDANRLAVAGHSMGGGGTLRIAEQNPSLKAAVPLTPWHTDKTFNTSVPVLIVGAEADTVAPVSQHAIPFYQNLPSTTPKVYVELKNASHIAPMSNNAAISVYTISWMKLWVDNDTRYRQFLCNVNDPALSDFRTNNRHCQ"}
  ],
  "microorganisms": [
    {"id": 1, "accession": "PBZDQG", "visibility": "public", "name": "Clonostachys rosea", "tax_id": 29856, "lineage": "cellular root:cellular organisms; domain:Eukaryota; clade:Opisthokonta; kingdom:Fungi; subkingdom:Dikarya; phylum:Ascomycota; clade:saccharomyceta; subphylum:Pezizomycotina; clade:leotiomyceta; clade:sordariomyceta; class:Sordariomycetes; subclass:Hypocreomycetidae; order:Hypocreales; family:Bionectriaceae; genus:Clonostachys; species:Clonostachys rosea", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": "New Zealand", "sample_environment": null, "sample_description": "Strain isolated in Rotorua, New Zealand, and provided by the Scion Research Institute, Rotorua. Referred to throughout the paper as C. rosea PCL in reference to its plastic-degrading capability.", "plastics": "PE; PCL; PLA; PS", "result": "positive; negative; negative; negative", "methods": "clear_zone,sem,weight_loss; clear_zone; clear_zone; clear_zone", "substrate_form": "whole_polymer", "source_proteins": "Cutinase g16887.t1; Cutinase g9562.t1", "paper_id": 1, "paper_citation": "Gambarini, V., Pavlov, N., Young, P., Dawes, S., Auffret, A., Kingsbury, J. M., Donaldson, L. A., Smith, D. A., Weaver, L., Pantos, O., Handley, K. M., & Lear, G. (2025). Molecular mechanisms of plastic biodegradation by the fungus Clonostachys rosea. mBio. https://doi.org/10.1128/mbio.00335-25", "paper_doi": "10.1128/mbio.00335-25", "paper_year": 2025},
    {"id": 2, "accession": "PB3E8R", "visibility": "public", "name": "Pseudideonella sakaiensis", "tax_id": 1547922, "lineage": "cellular root:cellular organisms; domain:Bacteria; kingdom:Pseudomonadati; phylum:Pseudomonadota; class:Betaproteobacteria; order:Burkholderiales; family:Sphaerotilaceae; genus:Pseudideonella; species:Pseudideonella sakaiensis", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": "Japan", "sample_environment": "industrial", "sample_description": "Sediment sample from a PET bottle recycling site; one of 250 PET debris-contaminated environmental samples (sediment, soil, wastewater, activated sludge) collected at the site.", "plastics": "PET", "result": "positive", "methods": "growth_on_plastic,sem", "substrate_form": "amorphous_film", "source_proteins": "PETase; MHETase", "paper_id": 3, "paper_citation": "Yoshida, S., Hiraga, K., Takehana, T., Taniguchi, I., Yamaji, H., Maeda, Y., Toyohara, K., Miyamoto, K., Kimura, Y., & Oda, K. (2016). A bacterium that degrades and assimilates poly(ethylene terephthalate). Science, 351(6278), 1196-1199.", "paper_doi": "10.1126/science.aad6359", "paper_year": 2016},
    {"id": 3, "accession": "PBN2HW", "visibility": "public", "name": "uncultured bacterium", "tax_id": 77133, "lineage": "cellular root:cellular organisms; domain:Bacteria; species:uncultured bacterium", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": null, "sample_environment": null, "sample_description": null, "plastics": null, "result": null, "methods": null, "substrate_form": null, "source_proteins": "LCC", "paper_id": null, "paper_citation": null, "paper_doi": null, "paper_year": null},
    {"id": 4, "accession": "PB2WEM", "visibility": "public", "name": "Saccharomonospora viridis", "tax_id": 1852, "lineage": "cellular root:cellular organisms; domain:Bacteria; kingdom:Bacillati; phylum:Actinomycetota; class:Actinomycetes; order:Pseudonocardiales; family:Pseudonocardiaceae; genus:Saccharomonospora; species:Saccharomonospora viridis", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": null, "sample_environment": null, "sample_description": null, "plastics": null, "result": null, "methods": null, "substrate_form": null, "source_proteins": "Cut190", "paper_id": null, "paper_citation": null, "paper_doi": null, "paper_year": null},
    {"id": 5, "accession": "PBRSG9", "visibility": "public", "name": "Thermobifida fusca", "tax_id": 2021, "lineage": "cellular root:cellular organisms; domain:Bacteria; kingdom:Bacillati; phylum:Actinomycetota; class:Actinomycetes; order:Streptosporangiales; family:Nocardiopsidaceae; genus:Thermobifida; species:Thermobifida fusca", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": null, "sample_environment": null, "sample_description": null, "plastics": null, "result": null, "methods": null, "substrate_form": null, "source_proteins": "TfH", "paper_id": null, "paper_citation": null, "paper_doi": null, "paper_year": null},
    {"id": 6, "accession": "PBDDWE", "visibility": "public", "name": "Fusarium solani", "tax_id": 169388, "lineage": "cellular root:cellular organisms; domain:Eukaryota; clade:Opisthokonta; kingdom:Fungi; subkingdom:Dikarya; phylum:Ascomycota; clade:saccharomyceta; subphylum:Pezizomycotina; clade:leotiomyceta; clade:sordariomyceta; class:Sordariomycetes; subclass:Hypocreomycetidae; order:Hypocreales; family:Nectriaceae; genus:Fusarium; species group:Fusarium solani species complex; species:Fusarium solani", "growth_temp_min": null, "growth_temp_opt": null, "growth_temp_max": null, "oxygen_requirement": null, "sample_country": null, "sample_environment": null, "sample_description": null, "plastics": null, "result": null, "methods": null, "substrate_form": null, "source_proteins": "FsC", "paper_id": null, "paper_citation": null, "paper_doi": null, "paper_year": null}
  ],
  "plastics": [
    {"id": 1, "name": "HDPE", "full_name": "High-Density Polyethylene", "abbreviation": "HDPE", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 2, "name": "LDPE", "full_name": "Low-Density Polyethylene", "abbreviation": "LDPE", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 3, "name": "LLDPE", "full_name": "Linear Low-Density Polyethylene", "abbreviation": "LLDPE", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 4, "name": "PE", "full_name": "Polyethylene", "abbreviation": "PE", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 5, "name": "LDPE Blend", "full_name": "Low-Density Polyethylene Blend", "abbreviation": "LDPE Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 6, "name": "LLDPE Blend", "full_name": "Linear Low-Density Polyethylene Blend", "abbreviation": "LLDPE Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 7, "name": "PE Blend", "full_name": "Polyethylene Blend", "abbreviation": "PE Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 8, "name": "PP", "full_name": "Polypropylene", "abbreviation": "PP", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 9, "name": "PS", "full_name": "Polystyrene", "abbreviation": "PS", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 10, "name": "PS Blend", "full_name": "Polystyrene Blend", "abbreviation": "PS Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 11, "name": "PVA", "full_name": "Polyvinyl Alcohol", "abbreviation": "PVA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 12, "name": "PVA Blend", "full_name": "Polyvinyl Alcohol Blend", "abbreviation": "PVA Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 13, "name": "PVC", "full_name": "Polyvinyl Chloride", "abbreviation": "PVC", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 14, "name": "PVC Blend", "full_name": "Polyvinyl Chloride Blend", "abbreviation": "PVC Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 15, "name": "O-PVA", "full_name": "Oxidized Polyvinyl Alcohol", "abbreviation": "O-PVA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 16, "name": "PET", "full_name": "Poly(ethylene terephthalate)", "abbreviation": "PET", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 17, "name": "PETG", "full_name": "Poly(ethylene terephthalate glycol)", "abbreviation": "PETG", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 18, "name": "PBT", "full_name": "Poly(butylene terephthalate)", "abbreviation": "PBT", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 19, "name": "PCL", "full_name": "Polycaprolactone", "abbreviation": "PCL", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 20, "name": "PLA", "full_name": "Polylactic Acid", "abbreviation": "PLA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 21, "name": "PCL Blend", "full_name": "Polycaprolactone Blend", "abbreviation": "PCL Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 22, "name": "PLA Blend", "full_name": "Polylactic Acid Blend", "abbreviation": "PLA Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 23, "name": "PU", "full_name": "Polyurethane", "abbreviation": "PU", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 24, "name": "PU Blend", "full_name": "Polyurethane Blend", "abbreviation": "PU Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 25, "name": "PC", "full_name": "Polycarbonate", "abbreviation": "PC", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 26, "name": "Nylon", "full_name": "Nylon (Polyamide)", "abbreviation": "Nylon", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 27, "name": "PEG", "full_name": "Polyethylene Glycol", "abbreviation": "PEG", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 28, "name": "O-PE", "full_name": "Oxidized Polyethylene", "abbreviation": "O-PE", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 29, "name": "NR", "full_name": "Natural Rubber", "abbreviation": "NR", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 30, "name": "PHA", "full_name": "Polyhydroxyalkanoate", "abbreviation": "PHA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 31, "name": "PHB", "full_name": "Poly(3-hydroxybutyrate)", "abbreviation": "PHB", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 32, "name": "PHV", "full_name": "Poly(3-hydroxyvalerate)", "abbreviation": "PHV", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 33, "name": "P3HP", "full_name": "Poly(3-hydroxypropionate)", "abbreviation": "P3HP", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 34, "name": "P3HV", "full_name": "Poly(3-hydroxyvalerate)", "abbreviation": "P3HV", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 35, "name": "P4HB", "full_name": "Poly(4-hydroxybutyrate)", "abbreviation": "P4HB", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 36, "name": "PHBV", "full_name": "Poly(3-hydroxybutyrate-co-3-hydroxyvalerate)", "abbreviation": "PHBV", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 37, "name": "PHO", "full_name": "Poly(3-hydroxyoctanoate)", "abbreviation": "PHO", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 38, "name": "PHBH", "full_name": "Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate)", "abbreviation": "PHBH", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 39, "name": "PHA Blend", "full_name": "Polyhydroxyalkanoate Blend", "abbreviation": "PHA Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 40, "name": "P(3HB-co-3HV)", "full_name": "Poly(3-hydroxybutyrate-co-3-hydroxyvalerate)", "abbreviation": "P(3HB-co-3HV)", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 41, "name": "P(3HB-co-4HB)", "full_name": "Poly(3-hydroxybutyrate-co-4-hydroxybutyrate)", "abbreviation": "P(3HB-co-4HB)", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 42, "name": "P(3HB-co-HV)", "full_name": "Poly(3-hydroxybutyrate-co-hydroxyvalerate)", "abbreviation": "P(3HB-co-HV)", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 43, "name": "P(3HV-co-4HB)", "full_name": "Poly(3-hydroxyvalerate-co-4-hydroxybutyrate)", "abbreviation": "P(3HV-co-4HB)", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 44, "name": "P34HB", "full_name": "Poly(3-hydroxybutyrate-co-4-hydroxybutyrate)", "abbreviation": "P34HB", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 45, "name": "PHBVH", "full_name": "Poly(3-hydroxybutyrate-co-3-hydroxyvalerate-co-3-hydroxyhexanoate)", "abbreviation": "PHBVH", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 46, "name": "PHB-Blend", "full_name": "Poly(3-hydroxybutyrate) Blend", "abbreviation": "PHB-Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 47, "name": "PBS", "full_name": "Poly(butylene succinate)", "abbreviation": "PBS", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 48, "name": "PBSA", "full_name": "Poly(butylene succinate-co-adipate)", "abbreviation": "PBSA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 49, "name": "PBAT", "full_name": "Poly(butylene adipate-co-terephthalate)", "abbreviation": "PBAT", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 50, "name": "Ecovio-FT", "full_name": null, "abbreviation": "Ecovio-FT", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 51, "name": "Impranil", "full_name": null, "abbreviation": "Impranil", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 52, "name": "P(3HB-co-3MP)", "full_name": null, "abbreviation": "P(3HB-co-3MP)", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 53, "name": "PBS Blend", "full_name": null, "abbreviation": "PBS Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 54, "name": "PBS-Blend", "full_name": null, "abbreviation": "PBS-Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 55, "name": "PBSA-Blend", "full_name": null, "abbreviation": "PBSA-Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 56, "name": "PBAT-Blend", "full_name": null, "abbreviation": "PBAT-Blend", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 57, "name": "PBST55", "full_name": null, "abbreviation": "PBST55", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 58, "name": "PBSTIL", "full_name": null, "abbreviation": "PBSTIL", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 59, "name": "PBSeT", "full_name": null, "abbreviation": "PBSeT", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 60, "name": "PEA", "full_name": null, "abbreviation": "PEA", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 61, "name": "PEC", "full_name": null, "abbreviation": "PEC", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 62, "name": "PEF", "full_name": null, "abbreviation": "PEF", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 63, "name": "PES", "full_name": null, "abbreviation": "PES", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 64, "name": "PSS", "full_name": null, "abbreviation": "PSS", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 65, "name": "PPL", "full_name": null, "abbreviation": "PPL", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 66, "name": "PTC", "full_name": null, "abbreviation": "PTC", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 67, "name": "PTS", "full_name": null, "abbreviation": "PTS", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 68, "name": "PHC", "full_name": null, "abbreviation": "PHC", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 69, "name": "PHN", "full_name": null, "abbreviation": "PHN", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 70, "name": "PHPV", "full_name": null, "abbreviation": "PHPV", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 71, "name": "PMCL", "full_name": null, "abbreviation": "PMCL", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 72, "name": "Plastic", "full_name": null, "abbreviation": "Plastic", "polymer_class": null, "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 73, "name": "pPVC", "full_name": "Plasticized Poly(vinyl chloride)", "abbreviation": "pPVC", "polymer_class": "vinyl", "parent_id": 13, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 74, "name": "OVA", "full_name": "Vinyl Alcohol Oligomer", "abbreviation": "OVA", "polymer_class": "vinyl", "parent_id": 11, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 75, "name": "PVDF", "full_name": "Poly(vinylidene fluoride)", "abbreviation": "PVDF", "polymer_class": "fluoropolymer", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 76, "name": "OXO-PE", "full_name": "Oxo-degradable Polyethylene (pro-oxidant formulation)", "abbreviation": "OXO-PE", "polymer_class": "polyolefin", "parent_id": 4, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 77, "name": "PLGA", "full_name": "Poly(lactic-co-glycolic acid)", "abbreviation": "PLGA", "polymer_class": "polyester", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 78, "name": "PLLA", "full_name": "Poly(L-lactic acid)", "abbreviation": "PLLA", "polymer_class": "polyester", "parent_id": 20, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 79, "name": "PDLA", "full_name": "Poly(D-lactic acid)", "abbreviation": "PDLA", "polymer_class": "polyester", "parent_id": 20, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 80, "name": "PTT", "full_name": "Poly(trimethylene terephthalate)", "abbreviation": "PTT", "polymer_class": "polyester", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 81, "name": "PPBr", "full_name": "Poly(propylene brassylate)", "abbreviation": "PPBr", "polymer_class": "polyester", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 82, "name": "mcl-PHA", "full_name": "Medium-chain-length Polyhydroxyalkanoate", "abbreviation": "mcl-PHA", "polymer_class": "polyhydroxyalkanoate", "parent_id": 30, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 83, "name": "PHHx", "full_name": "Poly(3-hydroxyhexanoate)", "abbreviation": "PHHx", "polymer_class": "polyhydroxyalkanoate", "parent_id": 30, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 84, "name": "PHD", "full_name": "Poly(3-hydroxydecanoate)", "abbreviation": "PHD", "polymer_class": "polyhydroxyalkanoate", "parent_id": 30, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 85, "name": "Nylon 6", "full_name": "Polyamide 6 (Polycaprolactam)", "abbreviation": "Nylon 6", "polymer_class": "polyamide", "parent_id": 26, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 86, "name": "Nylon 66", "full_name": "Polyamide 6,6", "abbreviation": "Nylon 66", "polymer_class": "polyamide", "parent_id": 26, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 87, "name": "Nylon oligomer", "full_name": "6-Aminohexanoate oligomer (nylon-6 manufacturing by-product)", "abbreviation": "Nylon oligomer", "polymer_class": "polyamide", "parent_id": 26, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 88, "name": "PPG", "full_name": "Poly(propylene glycol)", "abbreviation": "PPG", "polymer_class": "polyether", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 89, "name": "CA", "full_name": "Cellulose Acetate", "abbreviation": "CA", "polymer_class": "cellulosic", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 90, "name": "CAP", "full_name": "Cellulose Acetate Propionate", "abbreviation": "CAP", "polymer_class": "cellulosic", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 91, "name": "TPS", "full_name": "Thermoplastic Starch", "abbreviation": "TPS", "polymer_class": "starch-based", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null},
    {"id": 92, "name": "Mater-Bi", "full_name": "Mater-Bi (starch-based bioplastic blend)", "abbreviation": "Mater-Bi", "polymer_class": "starch-based", "parent_id": null, "smiles": null, "cas_number": null, "monomers": null}
  ],
  "papers": [
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  ]
}