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首页> 外文期刊>Nature Communications >GATA-dependent regulatory switches establish atrioventricular canal specificity during heart development
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GATA-dependent regulatory switches establish atrioventricular canal specificity during heart development

机译:依赖GATA的调节开关在心脏发育过程中建立房室管特异性

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The embryonic vertebrate heart tube develops an atrioventricular canal that divides the atrial and ventricular chambers, forms atrioventricular conduction tissue and organizes valve development. Here we assess the transcriptional mechanism underlying this localized differentiation process. We show that atrioventricular canal-specific enhancers are GATA-binding site-dependent and act as switches that repress gene activity in the chambers. We find that atrioventricular canal-specific gene loci are enriched in H3K27ac, a marker of active enhancers, in atrioventricular canal tissue and depleted in H3K27ac in chamber tissue. In the atrioventricular canal, Gata4 activates the enhancers in synergy with Bmp2/Smad signalling, leading to H3K27 acetylation. In contrast, in chambers, Gata4 cooperates with pan-cardiac Hdac1 and Hdac2 and chamber-specific Hey1 and Hey2, leading to H3K27 deacetylation and repression. We conclude that atrioventricular canal-specific enhancers are platforms integrating cardiac transcription factors, broadly active histone modification enzymes and localized co-factors to drive atrioventricular canal-specific gene activity.
机译:胚胎脊椎动物心管发育一个房室管,该房室将房室和心室分开,形成房室传导组织并组织瓣膜发育。在这里,我们评估了这种局部分化过程的转录机制。我们显示房室管特定增强子是GATA结合位点依赖性的,并作为抑制室中基因活性的开关。我们发现房室管特异性基因位点在房室管组织中富含活性增强剂H3K27ac,并在房室组织中被耗尽。在房室管中,Gata4与Bmp2 / Smad信号协同激活增强子,导致H3K27乙酰化。相比之下,在小室中,Gata4与泛心型Hdac1和Hdac2以及小室特有的Hey1和Hey2协同作用,导致H3K27脱乙酰化和抑制。我们得出的结论是,房室管特异性增强子是整合心脏转录因子,广泛活性的组蛋白修饰酶和局部辅助因子以驱动房室管特异性基因活性的平台。

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