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Updated: May 29, 2025

Generation of Genomic Deletions in Mammalian Cell Lines via CRISPR/Cas9
Published on: January 3, 2015
SKI complex loss renders 9p21.3-deleted or MSI-H cancers dependent on PELO
Patricia C Borck1, Isabella Boyle1, Kristina Jankovic2
1Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Abstract:
Cancer genome alterations often lead to vulnerabilities that can be used to selectively target cancer cells. Various inhibitors of such synthetic lethal targets have been approved by the FDA or are in clinical trials, highlighting the potential of this approach1-3. Here we analysed large-scale CRISPR knockout screening data from the Cancer Dependency Map and identified a new synthetic lethal target, PELO, for two independent molecular subtypes of cancer: biallelic deletion of chromosomal region 9p21.3 or microsatellite instability-high (MSI-H). In 9p21.3-deleted cancers, PELO dependency emerges from biallelic deletion of the 9p21.3 gene FOCAD, a stabilizer of the superkiller complex (SKIc). In MSI-H cancers, PELO is required owing to MSI-H-associated mutations in TTC37 (also known as SKIC3), a critical component of the SKIc. We show that both cancer subtypes converge to destabilize the SKIc, which extracts mRNA from stalled ribosomes. In SKIc-deficient cells, PELO depletion induces the unfolded protein response, a stress response to accumulation of misfolded or unfolded nascent polypeptides. Together, our findings indicate PELO as a promising therapeutic target for a large patient population with cancers characterized as MSI-H with deleterious TTC37 mutations or with biallelic 9p21.3 deletions involving FOCAD.
Insights
We identified PELO as a novel synthetic lethal target in cancers with 9p21.3 deletions or microsatellite instability-high (MSI-H) status. Targeting PELO offers a promising therapeutic strategy for these specific cancer subtypes.
Area of Science:
- Genomics
- Cancer Biology
- Synthetic Lethality
Background:
- Cancer genome alterations create vulnerabilities exploitable for targeted therapies.
- Approved and investigational inhibitors demonstrate the potential of synthetic lethal targeting.
Purpose of the Study:
- To identify novel synthetic lethal targets in specific cancer subtypes.
- To investigate the role of PELO in cancers with 9p21.3 deletions or microsatellite instability-high (MSI-H).
Main Methods:
- Analysis of large-scale CRISPR knockout screening data from the Cancer Dependency Map.
- Investigated PELO dependency in cancers with biallelic 9p21.3 deletion or MSI-H.
- Examined the impact of PELO depletion on cellular stress responses.
Main Results:
- Identified PELO as a synthetic lethal target in cancers with biallelic 9p21.3 deletion (involving FOCAD) or MSI-H (involving TTC37 mutations).
- Both cancer subtypes lead to destabilization of the superkiller complex (SKIc).
- PELO depletion in SKIc-deficient cells induces the unfolded protein response.
Conclusions:
- PELO is a promising therapeutic target for cancers with biallelic 9p21.3 deletions or MSI-H with TTC37 mutations.
- Understanding PELO's role in SKIc function provides a basis for targeted cancer therapy development.
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