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Gene Regulatory Networks in Cardiac Conduction System Development

机译:基因监管网络中的心脏传导系统开发

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摘要

The cardiac conduction system is a specialized tract of myocardial cells responsible for maintaining normal cardiac rhythm. Given its critical role in coordinating cardiac performance, a detailed analysis of the molecular mechanisms underlying conduction system formation should inform our understanding of arrhythmia pathophysiology and affect the development of novel therapeutic strategies. Historically, the ability to distinguish cells of the conduction system from neighboring working myocytes presented a major technical challenge for performing comprehensive mechanistic studies. Early lineage tracing experiments suggested that conduction cells derive from cardiomyocyte precursors, and these claims have been substantiated by using more contemporary approaches. However, regional specialization of conduction cells adds an additional layer of complexity to this system, and it appears that different components of the conduction system utilize unique modes of developmental formation. The identification of numerous transcription factors and their downstream target genes involved in regional differentiation of the conduction system has provided insight into how lineage commitment is achieved. Furthermore, by adopting cutting-edge genetic techniques in combination with sophisticated phenotyping capabilities, investigators have made substantial progress in delineating the regulatory networks that orchestrate conduction system formation and their role in cardiac rhythm and physiology. This review describes the connectivity of these gene regulatory networks in cardiac conduction system development and discusses how they provide a foundation for understanding normal and pathological human cardiac rhythms.
机译:心脏传导系统是一种专业的心肌细胞,负责维持正常心律的节奏。鉴于其在协调心脏性能方面的关键作用,对传导系统形成的分子机制的详细分析应告知我们对心律失常病理生理学的理解,并影响新的治疗策略的发展。从历史上看,将传导系统的细胞与邻近的工作肌细胞区分的能力提出了进行综合机制研究的主要技术挑战。早期谱系追踪实验表明导电细胞源于心肌细胞前体,并且通过使用更现代的方法证实了这些权利要求。然而,传导细胞的区域专业化为该系统增加了额外的复杂性,看来导通系统的不同部件利用独特的发育形成模式。鉴定有许多转录因子及其下游靶向基因,参与导通系统的区域区别,已经深入了解逻辑承诺如何实现。此外,通过采用尖端的遗传技术与复杂的表型能力组合,调查人员在划定协调控制制度形成及其在心脏节律和生理学中的作用的情况下进行了实质性进展。该综述描述了这些基因监管网络在心脏传导系统开发中的连接,并讨论了如何为理解正常和病理人体心脏节律提供基础。

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