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Evolutionary Patterns of Non-Coding RNA in Cardiovascular Biology

机译:心血管生物学中非编码RNA的进化模式

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摘要

Cardiovascular diseases (CVDs) affect the heart and the vascular system with a high prevalence and place a huge burden on society as well as the healthcare system. These complex diseases are often the result of multiple genetic and environmental risk factors and pose a great challenge to understanding their etiology and consequences. With the advent of next generation sequencing, many non-coding RNA transcripts, especially long non-coding RNAs (lncRNAs), have been linked to the pathogenesis of CVD. Despite increasing evidence, the proper functional characterization of most of these molecules is still lacking. The exploration of conservation of sequences across related species has been used to functionally annotate protein coding genes. In contrast, the rapid evolutionary turnover and weak sequence conservation of lncRNAs make it difficult to characterize functional homologs for these sequences. Recent studies have tried to explore other dimensions of interspecies conservation to elucidate the functional role of these novel transcripts. In this review, we summarize various methodologies adopted to explore the evolutionary conservation of cardiovascular non-coding RNAs at sequence, secondary structure, syntenic, and expression level.
机译:心血管疾病(CVD)以很高的患病率影响心脏和血管系统,给社会和医疗系统造成巨大负担。这些复杂的疾病通常是多种遗传和环境风险因素的结果,对理解其病因和后果构成了巨大挑战。随着下一代测序的到来,许多非编码RNA转录物,特别是长的非编码RNA(lncRNA),已与CVD的发病机理有关。尽管有越来越多的证据,但大多数这些分子仍缺乏适当的功能表征。探索跨相关物种的序列保守性已用于功能性注释蛋白质编码基因。相反,lncRNA的快速进化更新和弱序列保守性使得难以表征这些序列的功能同源物。最近的研究试图探索种间保护的其他方面,以阐明这些新的成绩单的功能作用。在这篇综述中,我们总结了在序列,二级结构,同位和表达水平上探索心血管非编码RNA进化保守性所采用的各种方法。

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