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BET 蛋白介导的心力衰竭中的转录调控。

BET Protein-Mediated Transcriptional Regulation in Heart Failure.

机构信息

Division of Cardiology, Department of Internal Medicine, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Int J Mol Sci. 2021 Jun 4;22(11):6059. doi: 10.3390/ijms22116059.

Abstract

Heart failure is a complex disease process with underlying aberrations in neurohormonal systems that promote dysregulated cellular signaling and gene transcription. Over the past 10 years, the advent of small-molecule inhibitors that target transcriptional machinery has demonstrated the importance of the bromodomain and extraterminal (BET) family of epigenetic reader proteins in regulating gene transcription in multiple mouse models of cardiomyopathy. BETs bind to acetylated histone tails and transcription factors to integrate disparate stress signaling networks into a defined gene expression program. Under myocardial stress, BRD4, a BET family member, is recruited to superenhancers and promoter regions of inflammatory and profibrotic genes to promote transcription elongation. Whole-transcriptome analysis of BET-dependent gene networks suggests a major role of nuclear-factor kappa b and transforming growth factor-beta in the development of cardiac fibrosis and systolic dysfunction. Recent investigations also suggest a prominent role of BRD4 in maintaining cardiomyocyte mitochondrial respiration under basal conditions. In this review, we summarize the data from preclinical heart failure studies that explore the role of BET-regulated transcriptional mechanisms and delve into landmark studies that define BET bromodomain-independent processes involved in cardiac homeostasis.

摘要

心力衰竭是一种复杂的疾病过程,其潜在的神经激素系统异常会促进细胞信号转导和基因转录的失调。在过去的 10 年中,靶向转录机制的小分子抑制剂的出现表明,溴结构域和末端(BET)家族的表观遗传读蛋白在调节多种心肌病的基因转录中具有重要作用。BET 蛋白结合乙酰化组蛋白尾巴和转录因子,将不同的应激信号网络整合到一个明确的基因表达程序中。在心肌应激下,BET 家族成员 BRD4 被招募到炎症和促纤维化基因的超级增强子和启动子区域,以促进转录延伸。BET 依赖性基因网络的全转录组分析表明,核因子 kappa b 和转化生长因子-β在心脏纤维化和收缩功能障碍的发展中起着重要作用。最近的研究还表明,BRD4 在维持心肌细胞线粒体呼吸方面也起着重要作用。在这篇综述中,我们总结了来自心力衰竭临床前研究的数据,这些数据探讨了 BET 调节的转录机制的作用,并深入研究了定义心脏稳态中涉及的 BET 溴结构域非依赖性过程的标志性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88b7/8199980/59d92f6fb5f5/ijms-22-06059-g001.jpg

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