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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.
Abstract:
Ras proteins are crucial players in differentiation and oncogenesis and constitute important drug targets. The localization and activity of Ras proteins are highly dependent on posttranslational modifications at their C-termini. In addition to an isoprenylated cysteine, H-Ras, but not other Ras proteins, possesses two cysteine residues (C181 and C184) in the C-terminal hypervariable domain that act as palmitoylation sites in cells. Cyclopentenone prostaglandins (cyPG) are reactive lipidic mediators that covalently bind to H-Ras and activate H-Ras dependent pathways. Dienone cyPG, such as 15-deoxy-Δ(12,14)-PGJ(2) (15d-PGJ(2)) and Δ(12)-PGJ(2) selectively bind to the H-Ras hypervariable domain. Here we show that these cyPG bind simultaneously C181 and C184 of H-Ras, thus potentially altering the conformational tendencies of the hypervariable domain. Based on these results, we have explored the capacity of several bifunctional cysteine reactive small molecules to bind to the hypervariable domain of H-Ras proteins. Interestingly, phenylarsine oxide (PAO), a widely used tyrosine phosphatase inhibitor, and dibromobimane, a cross-linking agent used for cysteine mapping, effectively bind H-Ras hypervariable domain. The interaction of PAO with H-Ras takes place in vitro and in cells and blocks modification of H-Ras by 15d-PGJ(2). Moreover, PAO treatment selectively alters H-Ras membrane partition and the pattern of H-Ras activation in cells, from the plasma membrane to endomembranes. These results identify H-Ras as a novel target for PAO. More importantly, these observations reveal that small molecules or reactive intermediates interacting with spatially vicinal cysteines induce intramolecular cross-linking of H-Ras C-terminus potentially contributing to the modulation of Ras-dependent pathways.
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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