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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.
Abstract:
Ras GTPases and other CaaX proteins undergo multiple post-translational modifications at their carboxyl-terminus. These events initiate with prenylation of a cysteine and are followed by endoproteolytic removal of the 'aaX' tripeptide and carboxylmethylation. Some CaaX proteins are only subject to prenylation, however, due to the presence of an uncleavable sequence. In this study, uncleavable sequences were used to stage Ras isoforms in a farnesylated and uncleaved state to address the impact of CaaX proteolysis on protein localization and function. This targeted strategy is more specific than those that chemically inhibit the Rce1 CaaX protease or delete the RCE1 gene because global abrogation of CaaX proteolysis impacts the entire CaaX protein proteome and effects cannot be attributed to any specific CaaX protein of the many concurrently affected. With this targeted strategy, clear mislocalization and reduced activity of farnesylated and uncleaved Ras isoforms was observed. In addition, new peptidomimetics based on cleavable Ras CaaX sequences and the uncleavable CAHQ sequence were synthesized and tested as Rce1 inhibitors using in vitro and cell-based assays. Consistently, these non-hydrolyzable peptidomimetic Rce1 inhibitors recapitulate Ras mislocalization effects when modeled on cleavable but not uncleavable CaaX sequences. These findings indicate that a prenylated and uncleavable CaaX sequence, which can be easily applied to a wide range of mammalian CaaX proteins, can be used to probe the specific impact of CaaX proteolysis on CaaX protein properties under conditions of an otherwise normally processed CaaX protein proteome.
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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