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Published on: August 1, 2020
Haploid genetic screens identify genetic vulnerabilities to microtubule-targeting agents
Nora M Gerhards1, Vincent A Blomen2, Merve Mutlu1
1Institute of Animal Pathology, Vetsuisse Faculty, University of Bern, Switzerland.
Abstract:
The absence of biomarkers to accurately predict anticancer therapy response remains a major obstacle in clinical oncology. We applied a genome-wide loss-of-function screening approach in human haploid cells to characterize genetic vulnerabilities to classical microtubule-targeting agents. Using docetaxel and vinorelbine, two well-established chemotherapeutic agents, we sought to identify genetic alterations sensitizing human HAP1 cells to these drugs. Despite the fact that both drugs act on microtubules, a set of distinct genes were identified whose disruption affects drug sensitivity. For docetaxel, this included a number of genes with a function in mitosis, while for vinorelbine we identified inactivation of FBXW7, RB1, and NF2, three frequently mutated tumor suppressor genes, as sensitizing factors. We validated these genes using independent knockout clones and confirmed FBXW7 as an important regulator of the mitotic spindle assembly. Upon FBXW7 depletion, vinorelbine treatment led to decreased survival of cells due to defective mitotic progression and subsequent mitotic catastrophe. We show that haploid insertional mutagenesis screens are a useful tool to study genetic vulnerabilities to classical chemotherapeutic drugs by identifying thus far unknown sensitivity factors. These results provide a rationale for investigating patient response to vinca alkaloid-based anticancer treatment in relation to the mutational status of these three tumor suppressor genes, and could in the future lead to the establishment of novel predictive biomarkers or suggest new drug combinations based on molecular mechanisms of drug sensitivity.
Insights
Identifying genetic vulnerabilities to chemotherapy is crucial. This study found specific gene disruptions sensitize cells to docetaxel and vinorelbine, revealing potential biomarkers for predicting anticancer drug response.
Area of Science:
- Oncology
- Genetics
- Cell Biology
Background:
- Predicting patient response to anticancer therapies is challenging due to the lack of reliable biomarkers.
- Microtubule-targeting agents are widely used in chemotherapy but their efficacy varies significantly among patients.
Purpose of the Study:
- To identify genetic factors that influence sensitivity to microtubule-targeting agents, docetaxel and vinorelbine.
- To explore the potential of haploid screening for discovering novel predictive biomarkers in cancer therapy.
Main Methods:
- Genome-wide loss-of-function screening using human haploid cells (HAP1).
- Analysis of genetic alterations sensitizing cells to docetaxel and vinorelbine.
- Validation of identified genes, including FBXW7, RB1, and NF2, using knockout clones.
Main Results:
- Distinct sets of genes were identified for docetaxel and vinorelbine, despite both targeting microtubules.
- Inactivation of tumor suppressor genes FBXW7, RB1, and NF2 sensitized cells to vinorelbine.
- FBXW7 depletion led to mitotic defects and cell death upon vinorelbine treatment, confirming its role in mitotic spindle assembly.
Conclusions:
- Haploid insertional mutagenesis screens are effective for identifying genetic vulnerabilities to chemotherapeutic drugs.
- Mutational status of FBXW7, RB1, and NF2 may serve as predictive biomarkers for vinca alkaloid-based cancer treatments.
- Findings suggest potential for developing new predictive biomarkers and combination therapies based on drug sensitivity mechanisms.
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