Oncogenic mutations on Rac1 affect global intrinsic dynamics underlying GTP and PAK1 binding

Saliha Ece Acuner1, Fidan Sumbul1, Hamdi Torun2

  • 1Department of Chemical Engineering and Polymer Research Center, Bogazici University, Istanbul, Turkey.

Biophysical Journal
|January 30, 2021
PubMed

Insights

Oncogenic mutations in Rac1 alter its dynamics and mechanical properties, affecting its interaction with PAK1. These changes in protein mechanics and dynamics serve as potential indicators of cancer-driving mutations in Rac1 signaling.

Area of Science:

  • Molecular Biology
  • Biophysics
  • Cancer Research

Background:

  • Rac1, a Rho GTPase, plays a crucial role in cellular signaling pathways.
  • Aberrant Rac1 activation, particularly through mutations, contributes to oncogenesis.
  • The interaction between Rac1 and its downstream effector, p21-activated kinase 1 (PAK1), is critical for its signaling functions.

Purpose of the Study:

  • To investigate the impact of oncogenic mutations on the intrinsic dynamics and binding interactions of Rac1.
  • To elucidate the mechanical changes associated with Rac1 mutations using single-molecule force spectroscopy.
  • To understand how these mutations affect the Rac1-PAK1 complex's stability and dynamics.

Main Methods:

  • Atomic-force-microscopy-based single-molecule force spectroscopy (SMFS) to study Rac1-PAK1 interactions.
  • Gaussian network model (GNM) analysis to explore intrinsic protein dynamics.
  • Molecular dynamics (MD) simulations to assess binding free energies and dynamic behaviors.

Main Results:

  • Rac1 oncogenic mutations were identified at the hinges of global motion modes, indicating mechanical alterations.
  • SMFS revealed that mutations like Q61L and Y72C reduce the dynamic states of Rac1-PAK1 complex dissociation.
  • Mutations increase protein elasticity and slow the transition to the unbound state, while altering flexibility and cooperativity of key binding residues.

Conclusions:

  • Active Rac1 mutations significantly affect its intrinsic dynamics and the mechanical properties of the Rac1-PAK1 complex.
  • These dynamic and mechanical changes are potential markers for oncogenicity and influence binding interactions with GTP and partners like PAK1.
  • The findings provide insights into the molecular mechanisms by which Rac1 mutations drive oncogenic signaling.

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