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Abstract Combinations of BRAF inhibitors and MEK inhibitors (BRAFi + MEKi) are FDA-approved to treat BRAFV600E/K-mutant melanoma. Efficacy of BRAFi + MEKi associates with cancer cell death and alterations in the tumor immune microenvironment; however, the links are poorly understood. We show that BRAFi + MEKi caused durable melanoma regression in an immune-mediated manner. BRAFi + MEKi treatment promoted cleavage of gasdermin E (GSDME) and release of HMGB1, markers of pyroptotic cell death. GSDME-deficient melanoma showed defective HMGB1 release, reduced tumor-associated T cell and activated dendritic cell infiltrates in response to BRAFi + MEKi, and more frequent tumor regrowth after drug removal. Importantly, BRAFi + MEKi–resistant disease lacked pyroptosis markers and showed decreased intratumoral T-cell infiltration but was sensitive to pyroptosis-inducing chemotherapy. These data implicate BRAFi + MEKi–induced pyroptosis in antitumor immune responses and highlight new therapeutic strategies for resistant melanoma. Significance: Targeted inhibitors and immune checkpoint agents have advanced the care of patients with melanoma; however, detailed knowledge of the intersection between these two research areas is lacking. We describe a molecular mechanism of targeted inhibitor regulation of an immune-stimulatory form of cell death and provide a proof-of-principle salvage therapy concept for inhibitor-resistant melanoma. See related commentary by Smalley, p. 176. This article is highlighted in the In This Issue feature, p. 161
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Dan A. Erkes
Thomas Jefferson University
Weijia Cai
Southern Illinois University School of Medicine
Ileine M. Sanchez
Integral Molecular (United States)
Cancer Discovery
Drexel University
Thomas Jefferson University
Sidney Kimmel Cancer Center
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Erkes et al. (Tue,) studied this question.
synapsesocial.com/papers/6a17bf243aabde875b12e532 — DOI: https://doi.org/10.1158/2159-8290.cd-19-0672