4.6 Article

Ligand Binding and Subtype Selectivity of the Human A2A Adenosine Receptor IDENTIFICATION AND CHARACTERIZATION OF ESSENTIAL AMINO ACID RESIDUES

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JOURNAL OF BIOLOGICAL CHEMISTRY
卷 285, 期 17, 页码 13032-13044

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M109.096974

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资金

  1. Protein Structure Initiative [U54 GM074961]
  2. Dutch Top Institute Pharma [D1-105]
  3. Oulu Biocenter (Finland) [2009]
  4. Sigrid Juselius Foundation (Finland) [2009]
  5. Orion-Farmos Research Foundation (Finland) [2009]
  6. Marie Curie European

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The crystal structure of the human A(2A) adenosine receptor bound to the A(2A) receptor-specific antagonist, ZM241385, was recently determined at 2.6-angstrom resolution. Surprisingly, the antagonist binds in an extended conformation, perpendicular to the plane of the membrane, and indicates a number of interactions unidentified before in ZM241385 recognition. To further understand the selectivity of ZM241385 for the human A2A adenosine receptor, we examined the effect of mutating amino acid residues within the binding cavity likely to have key interactions and that have not been previously examined. Mutation of Phe-168 to Ala abolishes both agonist and antagonist binding as well as receptor activity, whereas mutation of this residue to Trp or Tyr had only moderate effects. The Met-177 -> Ala mutation impeded antagonist but not agonist binding. Finally, the Leu-249 -> Ala mutant showed neither agonist nor antagonist binding affinity. From our results and previously published mutagenesis data, we conclude that conserved residues Phe-168( 5.29), Glu-169(5.30), Asn-253(6.55), and Leu-249(6.51) play a central role in coordinating the bicyclic core present in both agonists and antagonists. By combining the analysis of the mutagenesis data with a comparison of the sequences of different adenosine receptor subtypes from different species, we predict that the interactions that determine subtype selectivity reside in the more divergent upper region of the binding cavity while the lower part of the binding cavity is conserved across adenosine receptor subtypes.

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