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Updated: Nov 28, 2025

Fully Processed Recombinant KRAS4b: Isolating and Characterizing the Farnesylated and Methylated Protein
Published on: January 16, 2020
Scaffold association factor B (SAFB) is required for expression of prenyltransferases and RAS membrane association
Mo Zhou1, Leena Kuruvilla2, Xiarong Shi2
1Perlmutter Cancer Center, NYU Langone Health, New York, NY 10016.
Abstract:
Inhibiting membrane association of RAS has long been considered a rational approach to anticancer therapy, which led to the development of farnesyltransferase inhibitors (FTIs). However, FTIs proved ineffective against KRAS-driven tumors. To reveal alternative therapeutic strategies, we carried out a genome-wide CRISPR-Cas9 screen designed to identify genes required for KRAS4B membrane association. We identified five enzymes in the prenylation pathway and SAFB, a nuclear protein with both DNA and RNA binding domains. Silencing SAFB led to marked mislocalization of all RAS isoforms as well as RAP1A but not RAB7A, a pattern that phenocopied silencing FNTA, the prenyltransferase α subunit shared by farnesyltransferase and geranylgeranyltransferase type I. We found that SAFB promoted RAS membrane association by controlling FNTA expression. SAFB knockdown decreased GTP loading of RAS, abrogated alternative prenylation, and sensitized RAS-mutant cells to growth inhibition by FTI. Our work establishes the prenylation pathway as paramount in KRAS membrane association, reveals a regulator of prenyltransferase expression, and suggests that reduction in FNTA expression may enhance the efficacy of FTIs.
Insights
SAFB regulates RAS protein membrane association by controlling FNTA expression. This finding reveals a new therapeutic strategy to enhance farnesyltransferase inhibitor efficacy in KRAS-driven cancers.
Area of Science:
- Molecular biology
- Cell biology
- Cancer research
Background:
- Inhibiting RAS membrane association is a key anticancer strategy.
- Farnesyltransferase inhibitors (FTIs) were developed but ineffective against KRAS-driven tumors.
Purpose of the Study:
- Identify genes essential for KRAS4B membrane association using a genome-wide CRISPR-Cas9 screen.
- Explore alternative therapeutic strategies for KRAS-driven cancers.
Main Methods:
- Genome-wide CRISPR-Cas9 screening to identify genes involved in RAS membrane association.
- Gene silencing (knockdown) experiments to validate findings.
- Analysis of RAS protein localization, GTP loading, and prenylation.
Main Results:
- Identified five prenylation pathway enzymes and SAFB as crucial for RAS membrane association.
- SAFB silencing caused mislocalization of RAS isoforms and RAP1A, mimicking FNTA silencing.
- SAFB controls FNTA expression, impacting RAS membrane association and GTP loading.
- SAFB knockdown sensitized RAS-mutant cells to FTI growth inhibition.
Conclusions:
- The prenylation pathway is critical for KRAS membrane association.
- SAFB is a novel regulator of prenyltransferase expression.
- Reducing FNTA expression may improve FTI effectiveness in KRAS-mutant cancers.
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