Bromodomain inhibition overcomes treatment resistance in distinct molecular subtypes of melanoma.

Dar, Altaf A; Bezrookove, Vladimir; Nosrati, Mehdi; Ice, Ryan; Patino, John M; Vaquero, Edith M; Parrett, Brian; Leong, Stanley P et al. · Proc Natl Acad Sci U S A · 2022

basic_science · Level V

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Abstract

Therapy of <i>BRAF</i>-mutant melanoma with selective inhibitors of BRAF (BRAFi) and MEK (MEKi) represents a major clinical advance but acquired resistance to therapy has emerged as a key obstacle. To date, no clinical approaches successfully resensitize to BRAF/MEK inhibition. Here, we develop a therapeutic strategy for melanoma using bromosporine, a bromodomain inhibitor. Bromosporine (bromo) monotherapy produced significant anti-tumor effects against established melanoma cell lines and patient-derived xenografts (PDXs). Combinatorial therapy involving bromosporine and cobimetinib (bromo/cobi) showed synergistic anti-tumor effects in multiple BRAFi-resistant PDX models. The bromo/cobi combination was superior in vivo to standard BRAFi/MEKi therapy in the treatment-naive <i>BRAF</i>-mutant setting and to MEKi alone in the setting of immunotherapy-resistant <i>NRAS</i>- and <i>NF1</i>-mutant melanoma. RNA sequencing of xenografts treated with bromo/cobi revealed profound down-regulation of genes critical to cell division and mitotic progression. Bromo/cobi treatment resulted in marked DNA damage and cell-cycle arrest, resulting in induction of apoptosis. These studies introduce bromodomain inhibition, alone or combined with agents targeting the mitogen activated protein kinase pathway, as a rational therapeutic approach for melanoma refractory to standard targeted or immunotherapeutic approaches.

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