Allosteric modulation of Ras positions Q61 for a direct role in catalysis

Greg Buhrman1, Genevieve Holzapfel, Susan Fetics

  • 1Department of Molecular and Structural Biochemistry, North Carolina State University, 128 Polk Hall-CB 7622, Raleigh, NC 27695, USA.

Insights

Mutant Ras proteins with Q61 alterations are common in cancers. New structural data reveals how Q61 directly participates in GTP hydrolysis, stabilizing the transition state for cancer therapy insights.

Area of Science:

  • Molecular Biology
  • Biochemistry
  • Structural Biology

Background:

  • Ras and Raf are crucial in the Ras/Raf/MEK/ERK signaling pathway.
  • Q61 mutants of Ras impair GTPase activity and are linked to human cancers.
  • The precise catalytic mechanism of Q61 has remained unclear.

Purpose of the Study:

  • To elucidate the catalytic mechanism of Q61 in Ras.
  • To understand how Q61 contributes to GTP hydrolysis.
  • To investigate the structural basis of Ras activation.

Main Methods:

  • X-ray crystallography of wild-type Ras with calcium acetate.
  • Structural analysis of Ras bound to calcium acetate.
  • Comparative analysis of Ras structures with and without bound ligands.

Main Results:

  • A novel structure of wild-type Ras bound to calcium acetate was determined.
  • Calcium acetate binding induced ordering of switch II and a unique Q61 conformation.
  • Q61 was observed to directly interact with a water molecule, stabilizing the GTP hydrolysis transition state.
  • This interaction involves a water molecule bridging a gamma-phosphate oxygen and Y32 hydroxyl group.

Conclusions:

  • The Q61 residue plays a direct catalytic role in Ras GTP hydrolysis.
  • Calcium binding and interactions with negatively charged groups (mimicked by acetate) are proposed to complete the Ras active site.
  • This finding provides new structural insights into Ras function and potential therapeutic strategies for cancer.

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