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CTCF counter-regulates cardiomyocyte development and maturation programs in the embryonic heart

机译:CTCF调节胚胎心脏中的心肌细胞发育和成熟程序

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Cardiac progenitors are specified early in development and progressively differentiate and mature into fully functional cardiomyocytes. This process is controlled by an extensively studied transcriptional program. However, the regulatory events coordinating the progression of such program from development to maturation are largely unknown. Here, we show that the genome organizer CTCF is essential for cardiogenesis and that it mediates genomic interactions to coordinate cardiomyocyte differentiation and maturation in the developing heart. Inactivation of Ctcf in cardiac progenitor cells and their derivatives in vivo during development caused severe cardiac defects and death at embryonic day 12.5. Genome wide expression analysis in Ctcf mutant hearts revealed that genes controlling mitochondrial function and protein production, required for cardiomyocyte maturation, were upregulated. However, mitochondria from mutant cardiomyocytes do not mature properly. In contrast, multiple development regulatory genes near predicted heart enhancers, including genes in the IrxA cluster, were downregulated in Ctcf mutants, suggesting that CTCF promotes cardiomyocyte differentiation by facilitating enhancer-promoter interactions. Accordingly, loss of CTCF disrupts gene expression and chromatin interactions as shown by chromatin conformation capture followed by deep sequencing. Furthermore, CRISPR-mediated deletion of an intergenic CTCF site within the IrxA cluster alters gene expression in the developing heart. Thus, CTCF mediates local regulatory interactions to coordinate transcriptional programs controlling transitions in morphology and function during heart development.
机译:心脏祖细胞在发育早期就已确定,并逐渐分化并成熟为功能齐全的心肌细胞。该过程由广泛研究的转录程序控制。但是,协调这种程序从发育到成熟的过程的调控事件在很大程度上是未知的。在这里,我们表明基因组组织者CTCF对于心脏发生至关重要,并且它介导基因组相互作用来协调正在发育的心脏中的心肌细胞分化和成熟。在发育过程中,体内心脏祖细胞及其衍生物中Ctcf的失活导致严重的心脏缺陷,并在胚胎第12.5天死亡。 Ctcf突变心脏中的基因组广泛表达分析表明,控制心肌成熟所需的控制线粒体功能和蛋白质生产的基因被上调。但是,来自突变型心肌细胞的线粒体不能适当地成熟。相反,在Ctcf突变体中,靠近预期心脏增强子的多个发育调控基因,包括IrxA簇中的基因,被下调,表明CTCF通过促进增强子与启动子的相互作用来促进心肌细胞的分化。因此,如染色质构象捕获然后深度测序所示,CTCF的丧失破坏了基因表达和染色质相互作用。此外,CRISPR介导的IrxA簇内基因间CTCF位点的缺失改变了心脏发育中的基因表达。因此,CTCF介导局部调节相互作用,以协调控制心脏发育过程中形态和功能转变的转录程序。

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