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Overcoming Clinical Resistance to EZH2 Inhibition Using Rational Epigenetic Combination Therapy
Yaniv Kazansky1,2, Daniel Cameron1,2, Helen S Mueller1,2
1Molecular Pharmacology Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
Epigenetic dependencies have become evident in many cancers. On the basis of antagonism between BAF/SWI-SNF and PRC2 in SMARCB1-deficient sarcomas, we recently completed the clinical trial of the EZH2 inhibitor tazemetostat. However, the principles of tumor response to epigenetic therapy in general, and tazemetostat in particular, remain unknown. Using functional genomics and diverse experimental models, we define molecular mechanisms of tazemetostat resistance in SMARCB1-deficient tumors. We found distinct acquired mutations that converge on the RB1/E2F axis and decouple EZH2-dependent differentiation and cell-cycle control. This allows tumor cells to escape tazemetostat-induced G1 arrest, suggests a general mechanism for effective therapy, and provides prospective biomarkers for therapy stratification, including PRICKLE1. On the basis of this, we develop a combination strategy to circumvent tazemetostat resistance using bypass targeting of AURKB. This offers a paradigm for rational epigenetic combination therapy suitable for translation to clinical trials for epithelioid sarcomas, rhabdoid tumors, and other epigenetically dysregulated cancers.
Significance:
Genomic studies of patient epithelioid sarcomas and rhabdoid tumors identify mutations converging on a common pathway for response to EZH2 inhibition. Resistance mutations decouple drug-induced differentiation from cell-cycle control. We identify an epigenetic combination strategy to overcome resistance and improve durability of response, supporting its investigation in clinical trials. See related commentary by Paolini and Souroullas, p. 903. This article is featured in Selected Articles from This Issue, p. 897.
Insights
Epigenetic therapy resistance in cancers can be overcome by targeting the RB1/E2F pathway. Combination therapy, including EZH2 inhibition and AURKB targeting, improves response durability in sarcomas.
Area of Science:
- Oncology
- Epigenetics
- Cancer Genomics
Background:
- Epigenetic dependencies are crucial in cancer development.
- SMARCB1-deficient sarcomas exhibit antagonism between BAF/SWI-SNF and PRC2 complexes.
- Tazemetostat, an EZH2 inhibitor, has undergone clinical trials for these cancers.
Purpose of the Study:
- To elucidate molecular mechanisms of tazemetostat resistance in SMARCB1-deficient tumors.
- To identify biomarkers for stratifying patient response to epigenetic therapy.
- To develop combination strategies to overcome treatment resistance.
Main Methods:
- Functional genomics and diverse experimental models were employed.
- Acquired mutations in resistance mechanisms were analyzed.
- Combination therapy targeting AURKB was developed and tested.
Main Results:
- Distinct mutations converge on the RB1/E2F axis, decoupling EZH2-dependent differentiation from cell-cycle control.
- Tumor cells escape tazemetostat-induced G1 arrest through these mutations.
- PRICKLE1 identified as a potential biomarker for therapy stratification.
Conclusions:
- Understanding resistance mechanisms provides insights into effective epigenetic therapy.
- A combination strategy targeting AURKB circumvents tazemetostat resistance.
- This approach offers a paradigm for rational epigenetic combination therapy in clinical trials for various cancers.
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