4.7 Review

Structural Mapping of Adenosine Receptor Mutations: Ligand Binding and Signaling Mechanisms

Journal

TRENDS IN PHARMACOLOGICAL SCIENCES
Volume 39, Issue 1, Pages 75-89

Publisher

ELSEVIER SCIENCE LONDON
DOI: 10.1016/j.tips.2017.11.001

Keywords

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Funding

  1. Swedish Research Council [521-2014-2118]
  2. Dutch Research Council Toegepaste en Technische Wetenschappen (NWO-TTW) [14410]
  3. Conselleria de Cultura, Educacion e Ordenacion Universitaria of the Galician Government [GPC2014/03]
  4. Centro Singular de Investigacion de Galicia accreditation [ED431G/09]
  5. European Regional Development Fund (ERDF)
  6. Deutsche Forschungsgemeinschaft (DFG) [FOR2372]

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The four adenosine receptors (ARs), A(1), A(2A), A(2B), and A(3), constitute a subfamily of G protein-coupled receptors (GPCRs) with exceptional foundations for structure-based ligand design. The vast amount of mutagenesis data, accumulated in the literature since the 1990s, has been recently supplemented with structural information, currently consisting of several inactive and active structures of the A(2A) and inactive conformations of the A(1) ARs. We provide the first integrated view of the pharmacological, biochemical, and structural data available for this receptor family, by mapping onto the relevant crystal structures all site-directed mutagenesis data, curated and deposited at the GPCR database (available through http://www.gpcrdb.org). This analysis provides novel insights into ligand binding, allosteric modulation, and signaling of the AR family.

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