早期心脏前体转录和表观基因组描述中的mesp1依赖性发育断点

A. Krup, Sarah Winchester, Sanjeev S. Ranade, Ayushi Agrawal, W. Devine, Tanvi Sinha, Krishna Choudhary, Martin H. Dominguez, Reuben Thomas, B. Black, D. Srivastava, B. Bruneau
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引用次数: 1

摘要

控制心脏前体细胞(CPC)规范的转录网络不完全了解,部分原因是在早期原肠胚形成中区分CPC与非心脏中胚层的局限性。我们在小鼠胚胎的颗粒单细胞转录组时间过程中检测早期心脏谱系转基因,以识别新兴的cpc并描述其转录谱。Mesp1是一种瞬时表达的中胚层转录因子(TF),通常被描述为心脏功能的早期调节因子。然而,我们在Mesp1突变体中观察到CPC转基因表达细胞的持久性,尽管定位错误,这促使我们研究Mesp1在CPC出现和分化中的作用范围。Mesp1突变的CPCs不能有效地激活心肌细胞成熟度和关键的心肌tf标记物,但它们表现出类似于心脏中胚层向心肌细胞命运发展的转录谱。单细胞染色质可及性分析定义了心脏谱系进展中mesp1依赖的发育断点,即从中胚层转录网络向心脏模式和形态发生所需的转录网络转变。这些结果揭示了早期CPC规范的mesp1独立方面,并强调了通过心脏发生进展所需的mesp1依赖性调节环境。
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A Mesp1-dependent developmental breakpoint in transcriptional and epigenomic specification of early cardiac precursors
Transcriptional networks governing cardiac precursor cell (CPC) specification are incompletely understood due in part to limitations in distinguishing CPCs from non-cardiac mesoderm in early gastrulation. We leveraged detection of early cardiac lineage transgenes within a granular single cell transcriptomic time course of mouse embryos to identify emerging CPCs and describe their transcriptional profiles. Mesp1, a transiently-expressed mesodermal transcription factor (TF), is canonically described as an early regulator of cardiac specification. However, we observed perdurance of CPC transgene-expressing cells in Mesp1 mutants, albeit mis-localized, prompting us to investigate the scope of Mesp1’s role in CPC emergence and differentiation. Mesp1 mutant CPCs failed to robustly activate markers of cardiomyocyte maturity and critical cardiac TFs, yet they exhibited transcriptional profiles resembling cardiac mesoderm progressing towards cardiomyocyte fates. Single cell chromatin accessibility analysis defined a Mesp1-dependent developmental breakpoint in cardiac lineage progression at a shift from mesendoderm transcriptional networks to those necessary for cardiac patterning and morphogenesis. These results reveal Mesp1-independent aspects of early CPC specification and underscore a Mesp1-dependent regulatory landscape required for progression through cardiogenesis.
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