BRD4 Connects Enhancer Remodeling to Senescence Immune Surveillance

Nilgun Tasdemir(Memorial Sloan Kettering Cancer Center), Ana Banito(Memorial Sloan Kettering Cancer Center), Jae‐Seok Roe(Cold Spring Harbor Laboratory), Direna Alonso‐Curbelo(Memorial Sloan Kettering Cancer Center), Matthew Camiolo(Stony Brook University), Darjus F. Tschaharganeh(Memorial Sloan Kettering Cancer Center), Chun‐Hao Huang(Memorial Sloan Kettering Cancer Center), Ozlem Aksoy(Memorial Sloan Kettering Cancer Center), Jessica E. Bolden(Memorial Sloan Kettering Cancer Center), Chi-Chao Chen(Memorial Sloan Kettering Cancer Center), Myles Fennell(Memorial Sloan Kettering Cancer Center), Vishal Thapar(Memorial Sloan Kettering Cancer Center), Agustin Chicas(Memorial Sloan Kettering Cancer Center), Christopher R. Vakoc(Cold Spring Harbor Laboratory), Scott W. Lowe(Memorial Sloan Kettering Cancer Center)
Cancer Discovery
April 21, 2016
Cited by 401Open Access
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Abstract

UNLABELLED: Oncogene-induced senescence is a potent barrier to tumorigenesis that limits cellular expansion following certain oncogenic events. Senescent cells display a repressive chromatin configuration thought to stably silence proliferation-promoting genes while simultaneously activating an unusual form of immune surveillance involving a secretory program referred to as the senescence-associated secretory phenotype (SASP). Here, we demonstrate that senescence also involves a global remodeling of the enhancer landscape with recruitment of the chromatin reader BRD4 to newly activated super-enhancers adjacent to key SASP genes. Transcriptional profiling and functional studies indicate that BRD4 is required for the SASP and downstream paracrine signaling. Consequently, BRD4 inhibition disrupts immune cell-mediated targeting and elimination of premalignant senescent cells in vitro and in vivo Our results identify a critical role for BRD4-bound super-enhancers in senescence immune surveillance and in the proper execution of a tumor-suppressive program. SIGNIFICANCE: This study reveals how cells undergoing oncogene-induced senescence acquire a distinctive enhancer landscape that includes formation of super-enhancers adjacent to immune-modulatory genes required for paracrine immune activation. This process links BRD4 and super-enhancers to a tumor-suppressive immune surveillance program that can be disrupted by small molecule inhibitors of the bromo and extra terminal domain family of proteins. Cancer Discov; 6(6); 612-29. ©2016 AACR.See related commentary by Vizioli and Adams, p. 576This article is highlighted in the In This Issue feature, p. 561.


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