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Epitranscriptional regulation of cardiovascular development and disease

机译:转录调控心血管的发展和疾病

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Development, homeostasis and responses to stress in the heart all depend on appropriate control of mRNA expression programmes, which may be enacted at the level of DNA sequence, DNA accessibility and RNA-mediated control of mRNA output. Diverse mechanisms underlie promoter-driven transcription of coding mRNAs and their translation into protein, and the ways in which sequence alteration of DNA can make an impact on these processes have been studied for some time. The field of epigenetics explores changes in DNA structure that influence its accessibility by transcriptional machinery, and we are continuing to develop our understanding of how these processes modify cardiac RNA production. In this topical review, we do not focus on how DNA sequence and methylation, and histone interactions, may alter its accessibility, but rather on newly described mechanisms by which some transcribed RNAs may alter initial transcription or downstream processing of other RNAs, involving both short non-coding RNAs (microRNAs) and long non-coding RNAs (lncRNAs). Here we present examples of how these two classes of non-coding RNAs mediate widespread effects on cardiac transcription and protein output in processes for which we use the broad term epitranscriptional regulation' and that are complementary to the DNA methylation and histone modification events studied by classical epigenetics.
机译:心脏的发育,体内稳态和对压力的反应都取决于对mRNA表达程序的适当控制,这可以在DNA序列,DNA可及性和RNA介导的mRNA输出控制水平上制定。多种机制是启动子驱动的编码mRNA转录及其翻译为蛋白质的基础,并且一段时间以来,人们一直在研究DNA序列改变对这些过程产生影响的方式。表观遗传学领域探索通过转录机制影响其可及性的DNA结构变化,并且我们正在继续发展对这些过程如何修饰心脏RNA产生的理解。在本专题综述中,我们不关注DNA序列和甲基化以及组蛋白相互作用如何改变其可及性,而是关注新描述的机制,通过该机制某些转录的RNA可以改变其他RNA的初始转录或下游加工,包括短时非编码RNA(microRNA)和长非编码RNA(lncRNA)。在这里,我们提供了这两种非编码RNA如何介导心脏转录和蛋白质输出的广泛影响的示例,在此过程中我们使用了广泛的术语“转录转录调控”,并且与经典研究的DNA甲基化和组蛋白修饰事件互补表观遗传学。

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