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Comprehensive Target Engagement by the EZH2 Inhibitor Tulmimetostat Allows for Targeting of ARID1A Mutant Cancers
Patricia J Keller1, Elizabeth J Adams1, Rentian Wu1
1Constellation Pharmaceuticals, A MorphoSys Company, Boston, Massachusetts.
Abstract:
Recurrent somatic mutations in the BRG1/BRM-associated factor (BAF) chromatin remodeling complex subunit ARID1A occur frequently in advanced urothelial, endometrial, and ovarian clear cell carcinomas, creating an alternative chromatin state that may be exploited therapeutically. The histone methyltransferase EZH2 has been previously identified as targetable vulnerability in the context of ARID1A mutations. In this study, we describe the discovery of tulmimetostat, an orally available, clinical stage EZH2 inhibitor, and it elucidates the aspects of its application potential in ARID1A mutant tumors. Tulmimetostat administration achieved efficacy in multiple ARID1A mutant bladder, ovarian, and endometrial tumor models and improved cisplatin response in chemotherapy-resistant models. Consistent with its comprehensive and durable level of target coverage, tulmimetostat demonstrated greater efficacy than other PRC2-targeted inhibitors at comparable or lower exposures in a bladder cancer xenograft mouse model. Tulmimetostat mediated extensive changes in gene expression, in addition to a profound reduction in global H3K27me3 levels in tumors. Phase I clinical pharmacokinetic and pharmacodynamic data indicated that tulmimetostat exhibits durable exposure and profound target engagement. Importantly, a tulmimetostat controlled gene expression signature identified in whole blood from a cohort of 32 patients with cancer correlated with tulmimetostat exposure, representing a pharmacodynamic marker for the assessment of target coverage for PRC2-targeted agents in the clinic. Collectively, these data suggest that tulmimetostat has the potential to achieve clinical benefit in solid tumors as a monotherapy but also in combination with chemotherapeutic agents, and may be beneficial in various indications with recurrent ARID1A mutations. Significance: The EZH2 inhibitor tulmimetostat achieves comprehensive target inhibition in ARID1A mutant solid tumor models and cancer patients that can be assessed with a pharmacodynamic gene signature in peripheral blood.
Insights
Tulmimetostat, an EZH2 inhibitor, shows efficacy in ARID1A-mutant cancers and improves chemotherapy response. A blood gene signature can monitor its target engagement in patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Recurrent ARID1A mutations in advanced cancers create therapeutic vulnerabilities.
- EZH2 is a targetable vulnerability in ARID1A-mutant tumors.
Purpose of the Study:
- To discover and evaluate tulmimetostat, an EZH2 inhibitor, for ARID1A-mutant tumors.
- To assess tulmimetostat's efficacy, target engagement, and potential as a therapeutic agent.
Main Methods:
- Preclinical studies in ARID1A-mutant tumor models (bladder, ovarian, endometrial).
- Pharmacokinetic and pharmacodynamic analysis in Phase I clinical trials.
- Development of a peripheral blood gene expression signature for target coverage assessment.
Main Results:
- Tulmimetostat demonstrated efficacy in ARID1A-mutant tumor models and enhanced cisplatin response.
- Superior efficacy compared to other PRC2 inhibitors in a bladder cancer model.
- Phase I data confirmed durable exposure, target engagement, and a correlated gene signature.
Conclusions:
- Tulmimetostat shows potential as a monotherapy or in combination for ARID1A-mutant solid tumors.
- A pharmacodynamic gene signature in blood can assess EZH2 inhibition by tulmimetostat in patients.
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