4.7 Article

PanGPCR: predictions for multiple targets, repurposing and side effects

期刊

BIOINFORMATICS
卷 37, 期 8, 页码 1184-1186

出版社

OXFORD UNIV PRESS
DOI: 10.1093/bioinformatics/btaa766

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资金

  1. Ministry of Science and Technology, Taiwan [108-2627-E-002-001-, 109-2320-B-002-040-, 109-2926-I-002-506-]
  2. National Taiwan University, Taiwan [NTU-CC-109L892703]
  3. Taiwan Food and Drug Administration, Taiwan, MOHW [109-FDA-D-114-000611]

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The PanGPCR system utilizes a library of experimentally determined crystal structures to predict potential GPCR targets, helping users to identify appropriate drug targets, determine repurposing potential, and predict potential side effects.
A Summary: Drug discovery targeting G protein-coupled receptors (GPCRs), the largest known class of therapeutic targets, is challenging. To facilitate the rapid discovery and development of GPCR drugs, we built a system, PanGPCR, to predict multiple potential GPCR targets and their expression locations in the tissues, side effects and possible repurposing of GPCR drugs. With PanGPCR, the compound of interest is docked to a library of 36 experimentally determined crystal structures comprising of 46 docking sites for human GPCRs, and a ranked list is generated from the docking studies to assess all GPCRs and their binding affinities. Users can determine a given compound's GPCR targets and its repurposing potential accordingly. Moreover, potential side effects collected from the SIDER (Side-Effect Resource) database and mapped to 45 tissues and organs are provided by linking predicted off-targets and their expressed sequence tag profiles. With PanGPCR, multiple targets, repurposing potential and side effects can be determined by simply uploading a small ligand.

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