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A universal allosteric mechanism for G protein activation

Molecular Cell, ISSN: 1097-2765, Vol: 81, Issue: 7, Page: 1384-1396.e6
2021
  • 37
    Citations
  • 0
    Usage
  • 108
    Captures
  • 0
    Mentions
  • 223
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    37
  • Captures
    108
  • Social Media
    223
    • Shares, Likes & Comments
      223
      • Facebook
        223

Article Description

G proteins play a central role in signal transduction and pharmacology. Signaling is initiated by cell-surface receptors, which promote guanosine triphosphate (GTP) binding and dissociation of Gα from the Gβγ subunits. Structural studies have revealed the molecular basis of subunit association with receptors, RGS proteins, and downstream effectors. In contrast, the mechanism of subunit dissociation is poorly understood. We use cell signaling assays, molecular dynamics (MD) simulations, and biochemistry and structural analyses to identify a conserved network of amino acids that dictates subunit release. In the presence of the terminal phosphate of GTP, a glycine forms a polar network with an arginine and glutamate, putting torsional strain on the subunit binding interface. This “G-R-E motif” secures GTP and, through an allosteric link, discharges the Gβγ dimer. Replacement of network residues prevents subunit dissociation regardless of agonist or GTP binding. These findings reveal the molecular basis of the final committed step of G protein activation.

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