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Updated: Sep 2, 2025

Generation and Expansion of Primary, Malignant Pleural Mesothelioma Tumor Lines
Published on: April 21, 2022
KAP1 is a new non-genetic vulnerability of malignant pleural mesothelioma (MPM)
Eugenia Lorenzini1, Federica Torricelli1, Raffaella Zamponi1
1Laboratory of Translational Research, Azienda USL-IRCCS di Reggio Emilia, 42123 Reggio Emilia, Italy.
Abstract:
Malignant pleural mesothelioma (MPM) is a rare and incurable cancer, which incidence is increasing in many countries. MPM escapes the classical genetic model of cancer evolution, lacking a distinctive genetic fingerprint. Omics profiling revealed extensive heterogeneity failing to identify major vulnerabilities and restraining development of MPM-oriented therapies. Here, we performed a multilayered analysis based on a functional genome-wide CRISPR/Cas9 screening integrated with patients molecular and clinical data, to identify new non-genetic vulnerabilities of MPM. We identified a core of 18 functionally-related genes as essential for MPM cells. The chromatin reader KAP1 emerged as a dependency of MPM. We showed that KAP1 supports cell growth by orchestrating the expression of a G2/M-specific program, ensuring mitosis correct execution. Targeting KAP1 transcriptional function, by using CDK9 inhibitors resulted in a dramatic loss of MPM cells viability and shutdown of the KAP1-mediated program. Validation analysis on two independent MPM-patients sets, including a consecutive, retrospective cohort of 97 MPM, confirmed KAP1 as new non-genetic dependency of MPM and proved the association of its dependent gene program with reduced patients' survival probability. Overall these data: provided new insights into the biology of MPM delineating KAP1 and its target genes as building blocks of its clinical aggressiveness.
Insights
Researchers identified KAP1 as a new vulnerability in malignant pleural mesothelioma (MPM), a rare cancer. Targeting KAP1 shows promise for developing new MPM therapies by disrupting cell division and impacting patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Malignant pleural mesothelioma (MPM) is a rare, aggressive cancer with increasing incidence.
- MPM lacks a clear genetic fingerprint, hindering targeted therapy development.
- Previous omics profiling revealed significant heterogeneity without identifying key vulnerabilities.
Purpose of the Study:
- To identify novel non-genetic vulnerabilities in MPM.
- To uncover essential genes and pathways driving MPM progression.
- To explore potential therapeutic targets for MPM.
Main Methods:
- Functional genome-wide CRISPR/Cas9 screening integrated with patient molecular and clinical data.
- Analysis of a core set of 18 functionally related essential genes.
- Investigation of the chromatin reader KAP1 and its role in MPM cell growth.
- Validation using two independent MPM patient cohorts (n=97).
Main Results:
- A core of 18 essential genes was identified in MPM cells.
- KAP1 was identified as a critical dependency in MPM.
- KAP1 orchestrates a G2/M-specific program essential for mitosis.
- Targeting KAP1 with CDK9 inhibitors reduced MPM cell viability.
- KAP1 dependency and its gene program correlated with reduced patient survival.
Conclusions:
- KAP1 is a novel non-genetic dependency in MPM.
- KAP1 and its target genes are key drivers of MPM clinical aggressiveness.
- Targeting KAP1 presents a potential therapeutic strategy for MPM.
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