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超级增强子定义了一个增殖的 PGC-1α 表达黑色素瘤亚组,对 BET 抑制敏感。

Super-enhancers define a proliferative PGC-1α-expressing melanoma subgroup sensitive to BET inhibition.

机构信息

Drug Discovery, Bayer AG, Berlin, Germany.

Innate Immunity, Deutsches Rheuma-Forschungszentrum, Berlin, Germany.

出版信息

Oncogene. 2018 Jan 25;37(4):512-521. doi: 10.1038/onc.2017.325. Epub 2017 Oct 9.

Abstract

Metabolic changes are linked to epigenetic reprogramming and play important roles in several tumor types. PGC-1α is a transcriptional coactivator controlling mitochondrial biogenesis and is linked to oxidative phosphorylation. We provide evidence that melanoma models with elevated PGC-1α levels are characteristic of the proliferative phenotype and are sensitive to bromodomain and extra-terminal domain (BET) inhibitor treatment. A super-enhancer region highly occupied by the BET family member BRD4 was identified for the PGC-1α gene. BET inhibitor treatment prevented this interaction, leading to a dramatic reduction of PGC-1α expression. Accordingly, BET inhibition diminished respiration and mitochondrial function in cells. In vivo, melanoma models with high PGC-1α expression strongly responded to BET inhibition by reduction of PGC-1α and impaired tumor growth. Altogether, our findings identify epigenetic regulatory elements that define a subset of melanomas with high sensitivity to BET inhibition, which opens up the opportunity to define melanoma patients most likely to respond to this treatment, depending on their tumor characteristics.

摘要

代谢变化与表观遗传重编程有关,在几种肿瘤类型中发挥着重要作用。PGC-1α 是一种转录共激活因子,控制着线粒体的生物发生,并与氧化磷酸化有关。我们提供的证据表明,PGC-1α 水平升高的黑色素瘤模型具有增殖表型的特征,并对溴结构域和末端结构域(BET)抑制剂治疗敏感。一个高度被 BET 家族成员 BRD4 占据的超级增强子区域被鉴定为 PGC-1α 基因。BET 抑制剂治疗阻止了这种相互作用,导致 PGC-1α 表达的急剧减少。相应地,BET 抑制减少了细胞中的呼吸和线粒体功能。在体内,高 PGC-1α 表达的黑色素瘤模型对 BET 抑制强烈反应,通过减少 PGC-1α 和损害肿瘤生长来实现。总之,我们的发现确定了一组对 BET 抑制高度敏感的黑色素瘤的表观遗传调控元件,这为根据肿瘤特征确定最有可能对这种治疗有反应的黑色素瘤患者提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aedd/5799712/bc4890f80cf5/onc2017325f1.jpg

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