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Competent for commitment: you've got to have heart!

机译:履行承诺:你必须心中!

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摘要

The mature heart is composed primarily of four different cell types: cardiac myocytes, endothelium, smooth muscle, and fibroblasts. These cell types derive from pluripotent progenitors that become progressively restricted with regard to lineage potential, giving rise to multipotent cardiac progenitor cells and, ultimately, the differentiated cell types of the heart. Recent studies have begun to shed light on the defining characteristics of the intermediary cell types that exist transiently during this developmental process and the extrinsic and cell-autonomous factors that influence cardiac lineage decisions and cellular competence. This information will shape our understanding of congenital and adult cardiac disease and guide regenerative therapeutic approaches. In addition, cardiac progenitor specification can serve as a model for understanding basic mechanisms regulating the acquisition of cellular identity. In this review, we present the concept of "chromatin competence" that describes the potential for three-dimensional chromatin organization to function as the molecular underpinning of the ability of a progenitor cell to respond to inductive lineage cues and summarize recent studies advancing our understanding of cardiac cell specification, gene regulation, and chromatin organization and how they impact cardiac development.
机译:成熟的心脏主要由四种不同的细胞类型组成:心肌细胞,内皮,平滑肌和成纤维细胞。这些细胞类型从多能祖细胞衍生,这在谱系潜力方面变得逐渐受到限制,从而产生了多能心脏祖细胞,并最终是心脏的差异化细胞类型。最近的研究已经开始在这种发展过程中瞬时存在的中间细胞类型的定义特征以及影响心脏谱系决策和蜂窝能力的外在和细胞自主因子来阐明。这些信息将塑造我们对先天性和成人心脏疾病的理解,并指导再生治疗方法。此外,心脏祖细胞规范可以作为理解调节蜂窝身份获取的基本机制的模型。在本综述中,我们介绍了“染色质能力”的概念,该概念描述了三维染色质组织作为祖细胞对诱导血统提示的能力的分子支撑作用的潜力,并概括了最近的研究推进了我们对其的理解心电图规范,基因调控和染色质组织以及它们如何影响心脏发育。

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