The C-terminus of H-Ras as a target for the covalent binding of reactive compounds modulating Ras-dependent pathways

Clara L Oeste1, Beatriz Díez-Dacal, Francesca Bray

  • 1Department of Chemical and Physical Biology, Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas, Madrid, Spain.

Plos One
|January 22, 2011
PubMed

Insights

Phenylarsine oxide (PAO) targets H-Ras, a key protein in cancer. PAO binds to H-Ras cysteines, altering its function and localization, revealing H-Ras as a novel PAO target for cancer therapy.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • Ras proteins, particularly H-Ras, are critical in cell differentiation and oncogenesis, making them important drug targets.
  • H-Ras activity and localization depend on C-terminal posttranslational modifications, including palmitoylation at cysteines C181 and C184.
  • Cyclopentenone prostaglandins (cyPGs) like 15d-PGJ2 covalently bind H-Ras, activating downstream pathways.

Purpose of the Study:

  • To investigate the binding of cyPGs to H-Ras and explore small molecules that interact with the H-Ras hypervariable domain.
  • To identify novel therapeutic targets and modulators for Ras-dependent pathways.

Main Methods:

  • In vitro and cellular assays to study the interaction of cyPGs and small molecules with H-Ras.
  • Utilizing phenylarsine oxide (PAO) and dibromobimane as bifunctional cysteine reactive agents.
  • Analyzing H-Ras membrane localization and activation patterns using PAO treatment.

Main Results:

  • Dienone cyPGs bind simultaneously to H-Ras cysteines C181 and C184, potentially altering the hypervariable domain conformation.
  • Phenylarsine oxide (PAO) and dibromobimane bind effectively to the H-Ras hypervariable domain.
  • PAO blocks 15d-PGJ2 modification of H-Ras, alters H-Ras membrane partitioning from plasma membrane to endomembranes, and selectively affects H-Ras activation.

Conclusions:

  • H-Ras is identified as a novel target for phenylarsine oxide (PAO).
  • Small molecules interacting with vicinal cysteines can induce intramolecular cross-linking of the H-Ras C-terminus.
  • These findings suggest a new mechanism for modulating Ras-dependent pathways via H-Ras C-terminal modification.

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