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  • Key determinants of nucleotide-activated G protein-coupled P2Y(2) receptor function revealed by chemical and pharmacological experiments, mutagenesis and homology modeling.

Key determinants of nucleotide-activated G protein-coupled P2Y(2) receptor function revealed by chemical and pharmacological experiments, mutagenesis and homology modeling.

Journal of medicinal chemistry (2009-05-08)
Petra Hillmann, Geun-Yung Ko, Andreas Spinrath, Alexandra Raulf, Ivar von Kügelgen, Samuel C Wolff, Robert A Nicholas, Evi Kostenis, Hans-Dieter Höltje, Christa E Müller
摘要

The P2Y(2) receptor, which is activated by UTP, ATP, and dinucleotides, was studied as a prototypical nucleotide-activated GPCR. A combination of receptor mutagenesis, determination of its effects on potency and efficacy of agonists and antagonists, homology modeling, and chemical experiments was applied. R272 (extracellular loop EL3) was found to play a gatekeeper role, presumably responsible for recognition and orientation of the nucleotides. R272 is also directly involved in binding of dinucleotides, which behaved as partial agonists. Y118A (3.37) mutation led to dramatically reduced efficacy of agonists; it is part of the entry channel as well as the triphosphate binding site. While the Y114A (3.33) mutation did not have any effect on agonist activities, the antagonist Reactive Blue 2 (6) was completely inactive at that mutant. The disulfide bridge Cys25-Cys278 was found to be important for agonist potency but neither for agonist efficacy nor for antagonist potency.

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Sigma-Aldrich
卡巴胆碱, ≥98% (titration), crystalline
Sigma-Aldrich
腺苷 5′-三磷酸腺苷 (ATP) 二钠盐 水合物, vial of ~1 mg ATP
Sigma-Aldrich
汽巴蓝 3GA 琼脂糖, Type 3000-CL, saline suspension