4.8 Article

Structural Basis for Allosteric Regulation of GPCRs by Sodium Ions

Journal

SCIENCE
Volume 337, Issue 6091, Pages 232-236

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1219218

Keywords

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Funding

  1. NIH Common Fund in Structural Biology grant [P50 GM073197]
  2. NIH/National Institute of General Medical Sciences (NIGMS) PSI: Biology grant [U54 GM094618]
  3. NIGMS [R01 GM089857, Y1-GM-1104]
  4. Dutch Research Council Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO) TOP grant [714.011.001]
  5. NWO Veni grant [11188]
  6. National Cancer Institute [Y1-CO-1020]

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Pharmacological responses of G protein-coupled receptors (GPCRs) can be fine-tuned by allosteric modulators. Structural studies of such effects have been limited due to the medium resolution of GPCR structures. We reengineered the human A(2A) adenosine receptor by replacing its third intracellular loop with apocytochrome b(562)RIL and solved the structure at 1.8 angstrom resolution. The high-resolution structure allowed us to identify 57 ordered water molecules inside the receptor comprising three major clusters. The central cluster harbors a putative sodium ion bound to the highly conserved aspartate residue Asp(2.50). Additionally, two cholesterols stabilize the conformation of helix VI, and one of 23 ordered lipids intercalates inside the ligand-binding pocket. These high-resolution details shed light on the potential role of structured water molecules, sodium ions, and lipids/cholesterol in GPCR stabilization and function.

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