Targeted genetic and small molecule disruption of N-Ras CaaX cleavage alters its localization and oncogenic potential

Emily R Hildebrandt1, Shaneela A Hussain2, Michelle A Sieburg3

  • 1Department of Biochemistry & Molecular Biology, University of Georgia, Athens, GA, USA.

Bioorganic Chemistry
|April 7, 2024
PubMed

Insights

Researchers developed a method to study Ras protein modifications by creating farnesylated and uncleaved Ras isoforms. This approach revealed mislocalization and reduced activity, offering insights into CaaX proteolysis impacts.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Biology

Background:

  • CaaX proteins, including Ras GTPases, undergo essential post-translational modifications at their C-terminus.
  • These modifications involve prenylation, endoproteolytic cleavage of the 'aaX' motif, and carboxylmethylation.
  • Some CaaX proteins possess uncleavable sequences, preventing proteolysis after prenylation.

Purpose of the Study:

  • To investigate the specific impact of CaaX proteolysis on Ras protein localization and function.
  • To develop a targeted strategy for studying CaaX protein modifications, distinct from global protease inhibition or gene deletion.

Main Methods:

  • Engineered Ras isoforms with uncleavable sequences to maintain a farnesylated and uncleaved state.
  • Utilized in vitro and cell-based assays to assess protein localization and activity.
  • Synthesized and tested novel peptidomimetic Rce1 inhibitors based on Ras CaaX sequences.

Main Results:

  • Observed clear mislocalization and reduced activity of farnesylated and uncleaved Ras isoforms.
  • Demonstrated that non-hydrolyzable peptidomimetic Rce1 inhibitors mimic Ras mislocalization effects on cleavable, but not uncleavable, CaaX sequences.
  • Validated the utility of prenylated and uncleavable CaaX sequences for probing proteolysis impacts.

Conclusions:

  • A prenylated and uncleavable CaaX sequence serves as a valuable tool to study the specific effects of CaaX proteolysis.
  • This targeted strategy allows for the examination of individual CaaX protein properties without disrupting the broader CaaX proteome.
  • Findings highlight the functional significance of CaaX proteolysis for proper Ras protein localization and activity.

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