Converting ChEMBL to sequence

This page gives you access to a subset of ChEMBL that has been converted to Protein Line Notation. A total of 27142 structures out of 39123 "peptide-like" structures have been successfully converted. More details on the conversion process can be found beneath the structure table.



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20 randomly selected converted structures

ChEMBL IDChEMBL structureConverted sequence imageProteax PLN (Protein Line Notation)
CHEMBL1221478H-IAP-OH name=CHEMBL1221478
CHEMBL2369401H-G[Res_2944]{d}[Res_895]{d}[Res_2080]R-OH name=CHEMBL2369401
CHEMBL2316218H-[Res_1700][Res_1036][Res_1668]-[CTerm_96] name=CHEMBL2316218
CHEMBL405222H-{d}C(1)FF{d}W[Res_837]TFC(1)-OH name=CHEMBL405222
CHEMBL86703[acetyl]-{d}[Res_1724]LDIVW-OH name=CHEMBL86703
CHEMBL1765203H-FAAEKVEEFR-OH name=CHEMBL1765203
CHEMBL2403635[NTerm_836]-[Res_1354][Res_2554][Res_1514]-OH name=CHEMBL2403635
CHEMBL2370108H-RR[Res_1340]C(1)Y{d}[Res_2510]K{d}KPYR{d}[Res_2510]C(1)R-OH name=CHEMBL2370108
CHEMBL368122H-[Res_2813][Res_2813][Res_2813]{d}S-OH name=CHEMBL368122
CHEMBL2372488(cyclo)-[N(Me)Bmt(E)]TG{d}[MeLeu]L{d}[MeLeu]A[Res_48][MeLeu]L[MeVal]-(cyclo) name=CHEMBL2372488
CHEMBL1824058H-C(1)FF{d}[Res_2350]KTFC(1)-OH name=CHEMBL1824058
CHEMBL414592[acetyl]-D[N(Me)Tyr(SO3H)][Nle]GW[Nle]DF-[NH2] name=CHEMBL414592
CHEMBL262670H-DRVYIHPFHL-OH name=CHEMBL262670
CHEMBL266812H-SLIGRLY-[NH2] name=CHEMBL266812
CHEMBL454525[acetyl]-[PhTyr]Q[Res_2382]L-[NH2] name=CHEMBL454525
CHEMBL404146[NTerm_836]-[Res_1354][Res_1324][Res_1514]-OH name=CHEMBL404146
CHEMBL413186[NTerm_700]-[Res_1873][Nle]G{d}W[Nle]D-[CTerm_63] name=CHEMBL413186
CHEMBL246137[acetyl]-GRPRAAVF-[CTerm_1086] name=CHEMBL246137
CHEMBL406276[NTerm_364]-HFRW-[NH2] name=CHEMBL406276
CHEMBL2104387H-[Res_1180]V[MeVal]PP-[CTerm_1086] name=CHEMBL2104387

Conversion process

All structures in the ChEMBL 19 database were downloaded as an SD file and, with the help of KNIME, probable "peptide-like" structures were identified. The "peptide-like" structures were defined as those containing a substructure of three connected glysines. This yielded a "peptide-like" subset of 39123 structures.

The peptide subset was loaded into a PostgreSQL database table and the Biochemfusion Proteax cartridge was used to convert structures, when possible, to sequences. The first conversion took 87 seconds and produced 27142 converted sequences.

You can download the full set of produced sequences (TAB-separated file with ChEMBL ID + PLN, ~11MB).

All found unknown residues and terminal structures were embedded as inline structures in the first round of produced PLN. The embedded structures were then de-duplicated and extracted. You can download the structure sets in gzip-ed SD file format from here:

143 of the unknown residue structures have been assigned well-defined names by NextMove Software's great Sugar & Splice tool (press the "Biologics" button). Many thanks to Roger Sayle at NextMove Software for processing this subset of residues with Sugar & Splice.

NextMove's residue names can be applied to a Proteax modification database (where the above SD files have been imported) by the following SQL script:

The currently produced PLN has been generated after all the above data has been loaded into Proteax's database of known structures. As you will see, most of the non-natural residues and terminals have auto-generated names based on sequential numbers.