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BET bromodomains mediate transcriptional pause release in heart failure

机译:BET溴结构域介导心力衰竭中的转录暂停释放

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摘要

Heart failure (HF) is driven by the interplay between regulatory transcription factors and dynamic alterations in chromatin structure. Pathologic gene transactivation in HF is associated with recruitment of histone acetyl-transferases and local chromatin hyperacetylation. We therefore assessed the role of acetyl-lysine reader proteins, or bromodomains, in HF. Using a chemical genetic approach, we establish a central role for BET family bromodomain proteins in gene control during HF pathogenesis. BET inhibition potently suppresses cardiomyocyte hypertrophy in vitro and pathologic cardiac remodeling in vivo. Integrative transcriptional and epigenomic analyses reveal that BET proteins function mechanistically as pause-release factors critical to expression of genes that are central to HF pathogenesis and relevant to the pathobiology of failing human hearts. This study implicates epigenetic readers as essential effectors of transcriptional pause release during HF pathogenesis and identifies BET coactivator proteins as therapeutic targets in the heart.
机译:心力衰竭(HF)由调节转录因子和染色质结构动态变化之间的相互作用驱动。 HF中的病理基因反式激活与组蛋白乙酰转移酶的募集和局部染色质超乙酰化有关。因此,我们评估了乙酰基赖氨酸阅读器蛋白或bromodomains在HF中的作用。使用化学遗传方法,我们在HF发病机理中建立BET家族溴结构域蛋白在基因控制中的核心作用。 BET抑制在体外有效抑制心肌肥大,在体内抑制病理性心脏重塑。整合的转录和表观基因组分析表明,BET蛋白在机制上起着暂停释放因子的作用,这对于HF发病机理的关键基因表达至关重要,而该基因与人类心脏衰竭的病理生物学相关。这项研究暗示表观遗传学读者是HF发病机理中转录暂停释放的重要效应子,并确定BET共激活蛋白是心脏中的治疗靶标。

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