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Updated: May 17, 2025

Pooled CRISPR-Based Genetic Screens in Mammalian Cells
Published on: September 4, 2019
Genome-wide CRISPR screen identifies BUB1 kinase as a druggable vulnerability in malignant pleural mesothelioma
Ece Cakiroglu1,2, Sude Eris1,2, Ozden Oz1,2,3
1Izmir Biomedicine and Genome Center, Izmir, Turkey.
Abstract:
Malignant pleural mesothelioma (MPM) is a rare yet highly aggressive malignancy with a severe prognosis. Compounded by the lack of effective treatment modalities, MPM remains a formidable health challenge. Therefore, the identification of actionable liabilities is critical for advancing precision medicine to combat this lethal disease. Here, we exploit an unbiased genome-wide CRISPR screen, integrating and cross-comparing three MPM cell lines with nonmalignant mesothelial cells, to selectively map the gene targets whose depletion indicates a common dependency in MPM cells. This systematic approach unveils a cohort of verifiable genes, among which BUB1, a mitotic checkpoint serine/threonine kinase, emerges as a high-confidence hit in cancer cells. Cellular and molecular studies demonstrate that genetic depletion or pharmacological inhibition of BUB1 profoundly impairs MPM cell survival and growth while inducing G2/M cell cycle arrest, cellular senescence, and apoptosis, and attenuating functional hallmarks of aggressive cancer cells. Transcriptomic profiling of BUB1-depleted cells discloses differential gene expression signatures congruent with cell fate phenotypes, including the reprogramming of mitotic network genes. Mechanistically, BUB1 is indispensable for the proper localization of essential mitotic regulators MAD1, MAD2, and Shugoshin (SGO1), thereby ensuring the functionality of the spindle assembly checkpoint (SAC). Furthermore, BUB1 ablation leads to cytokinesis failure and multinucleation, a phenotype characterized by the downregulation of CDC20, Cyclin A, and Cyclin B, and a reciprocal upregulation of the cyclin-dependent kinase inhibitor p21. Clinically, MPM tumors exhibit elevated levels of BUB1, and high BUB1 expression is associated with shorter patient survival. Our novel findings accentuate comparative CRISPR screens as a powerful platform to explore tumor cell-selective gene essentiality and propose BUB1 kinase as a potential marker and druggable vulnerability with therapeutic implications for MPM.
Insights
Identifying BUB1 as a key dependency in malignant pleural mesothelioma (MPM) offers a new therapeutic target. This study highlights BUB1 kinase as a potential marker and druggable vulnerability for treating this aggressive cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Malignant pleural mesothelioma (MPM) is a rare, aggressive cancer with poor prognosis and limited treatment options.
- Identifying novel therapeutic targets is crucial for advancing precision medicine in MPM.
Purpose of the Study:
- To identify gene targets essential for MPM cell survival using a genome-wide CRISPR screen.
- To investigate the role of BUB1 kinase as a potential therapeutic vulnerability in MPM.
Main Methods:
- Utilized a genome-wide CRISPR screen comparing three MPM cell lines with nonmalignant mesothelial cells.
- Conducted cellular and molecular studies, including transcriptomic profiling, to assess the impact of BUB1 depletion.
- Analyzed BUB1 expression levels in clinical MPM tumor samples.
Main Results:
- Identified BUB1, a mitotic checkpoint kinase, as a high-confidence essential gene in MPM cells.
- Demonstrated that BUB1 depletion or inhibition impairs MPM cell survival, induces cell cycle arrest, senescence, and apoptosis.
- Found that high BUB1 expression in MPM tumors correlates with shorter patient survival.
Conclusions:
- Comparative CRISPR screens are effective for identifying tumor-specific gene dependencies.
- BUB1 kinase is a critical regulator of mitosis in MPM and represents a druggable vulnerability.
- Targeting BUB1 may offer a novel therapeutic strategy for malignant pleural mesothelioma.

