4.7 Article

Molecular Recognition of Agonists and Antagonists by the Nucleotide-Activated G Protein-Coupled P2Y2Receptor

期刊

JOURNAL OF MEDICINAL CHEMISTRY
卷 60, 期 20, 页码 8425-8440

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.7b00854

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资金

  1. Ministry for Innovation, Science, Research and Technology of State of North Rhine-Westphalia through NRW International Graduate Research School Biotech-Pharma
  2. German Research Foundation (DFG) [GRK 1873]
  3. SQU grant [SR/SCI/CHEM/15/01]
  4. Deutscher Akademischer Austauschdienst (DAAD)

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A homology model of the nucleotide-activated P2Y(2)R was created based on the X-ray structures of the P2Y(1) receptor. Docking studies were performed, and receptor mutants were created to probe the identified binding interactions. Mutation of residues predicted to interact with the ribose (Arg110) and the phosphates of the nucleotide agonists (Arg265, Arg292) or that contribute indirectly to binding (Tyr288) abolished activity. The Y114F, R194A, and F261A mutations led to inactivity of diadenosine tetraphosphate and to a reduced response of UTP. Significant reduction in agonist potency was observed for all other receptor mutants (Phe111, His184, Ser193, Phe261, Tyr268, Tyr269) predicted to be involved in agonist recognition. An ionic lock between Asp185 and Arg292 that is probably involved in receptor activation interacts with the phosphate groups. The antagonist AR-C118925 and anthraquinones likely bind to the orthosteric site. The updated homology models will be useful for virtual screening and drug design.

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