Literature DB >> 25473121

Sodium ion binding pocket mutations and adenosine A2A receptor function.

Arnault Massink1, Hugo Gutiérrez-de-Terán1, Eelke B Lenselink1, Natalia V Ortiz Zacarías1, Lizi Xia1, Laura H Heitman1, Vsevolod Katritch1, Raymond C Stevens1, Adriaan P IJzerman2.   

Abstract

Recently we identified a sodium ion binding pocket in a high-resolution structure of the human adenosine A2A receptor. In the present study we explored this binding site through site-directed mutagenesis and molecular dynamics simulations. Amino acids in the pocket were mutated to alanine, and their influence on agonist and antagonist affinity, allosterism by sodium ions and amilorides, and receptor functionality was explored. Mutation of the polar residues in the Na(+) pocket were shown to either abrogate (D52A(2.50) and N284A(7.49)) or reduce (S91A(3.39), W246A(6.48), and N280A(7.45)) the negative allosteric effect of sodium ions on agonist binding. Mutations D52A(2.50) and N284A(7.49) completely abolished receptor signaling, whereas mutations S91A(3.39) and N280A(7.45) elevated basal activity and mutations S91A(3.39), W246A(6.48), and N280A(7.45) decreased agonist-stimulated receptor signaling. In molecular dynamics simulations D52A(2.50) directly affected the mobility of sodium ions, which readily migrated to another pocket formed by Glu13(1.39) and His278(7.43). The D52A(2.50) mutation also decreased the potency of amiloride with respect to ligand displacement but did not change orthosteric ligand affinity. In contrast, W246A(6.48) increased some of the allosteric effects of sodium ions and amiloride, whereas orthosteric ligand binding was decreased. These new findings suggest that the sodium ion in the allosteric binding pocket not only impacts ligand affinity but also plays a vital role in receptor signaling. Because the sodium ion binding pocket is highly conserved in other class A G protein-coupled receptors, our findings may have a general relevance for these receptors and may guide the design of novel synthetic allosteric modulators or bitopic ligands.
Copyright © 2015 by The American Society for Pharmacology and Experimental Therapeutics.

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Year:  2014        PMID: 25473121      PMCID: PMC6067640          DOI: 10.1124/mol.114.095737

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  34 in total

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3.  Allosteric Coupling of Drug Binding and Intracellular Signaling in the A2A Adenosine Receptor.

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Review 4.  Harnessing Ion-Binding Sites for GPCR Pharmacology.

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5.  A2A adenosine receptor functional states characterized by 19F-NMR.

Authors:  Lukas Sušac; Matthew T Eddy; Tatiana Didenko; Raymond C Stevens; Kurt Wüthrich
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6.  Structural Connection between Activation Microswitch and Allosteric Sodium Site in GPCR Signaling.

Authors:  Kate L White; Matthew T Eddy; Zhan-Guo Gao; Gye Won Han; Tiffany Lian; Alexander Deary; Nilkanth Patel; Kenneth A Jacobson; Vsevolod Katritch; Raymond C Stevens
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7.  Computational approaches to detect allosteric pathways in transmembrane molecular machines.

Authors:  Sebastian Stolzenberg; Mayako Michino; Michael V LeVine; Harel Weinstein; Lei Shi
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8.  Intracellular Transfer of Na+ in an Active-State G-Protein-Coupled Receptor.

Authors:  Owen N Vickery; Catarina A Carvalheda; Saheem A Zaidi; Andrei V Pisliakov; Vsevolod Katritch; Ulrich Zachariae
Journal:  Structure       Date:  2017-12-14       Impact factor: 5.006

9.  Could the presence of sodium ion influence the accuracy and precision of the ligand-posing in the human A2A adenosine receptor orthosteric binding site using a molecular docking approach? Insights from Dockbench.

Authors:  Enrico Margiotta; Giuseppe Deganutti; Stefano Moro
Journal:  J Comput Aided Mol Des       Date:  2018-10-25       Impact factor: 3.686

10.  How Do Short Chain Nonionic Detergents Destabilize G-Protein-Coupled Receptors?

Authors:  Sangbae Lee; Allen Mao; Supriyo Bhattacharya; Nathan Robertson; Reinhard Grisshammer; Christopher G Tate; Nagarajan Vaidehi
Journal:  J Am Chem Soc       Date:  2016-11-15       Impact factor: 15.419

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