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Two faces of bivalent domain regulate VEGFA responsiveness and angiogenesis

机译:二价结构域的两面调节VEGFA响应性和血管生成

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摘要

The bivalent domain (BD) at promoter region is an unique epigenetic feature poised for activation or repression during cell differentiation in embryonic stem cell. However, the function of BDs in already differentiated cells remains exclusive. By profiling the epigenetic landscape of endothelial cells during VEGFA (vascular endothelial growth factor A) stimulation, we discovered that BDs are widespread in endothelial cells and preferentially marked genes responsive to VEGFA. The BDs responsive to VEGFA have more permissive chromatin environment comparing to other BDs. The initial activation of bivalent genes depends on RNAPII pausing release induced by EZH1 rather than removal of H3K27me3. The later suppression of bivalent gene expression depended on KDM5A recruitment by its interaction with PRC2. Importantly, EZH1 promoted both in vitro and in vivo angiogenesis by upregulating EGR3, whereas KDM5A dampened angiogenesis. Collectively, this study demonstrates a novel dual function of BDs in endothelial cells to control VEGF responsiveness and angiogenesis.
机译:启动子区域的二价结构域(BD)是在胚胎干细胞中细胞分化期间有理为激活或抑制的独特表观遗传特征。然而,在已经差异化的细胞中的BDS功能仍然是独家的。通过在VEGFA(血管内皮生长因子A)刺激期间分析内皮细胞的表观遗传景观,我们发现BDS在内皮细胞中普及,并且优先标记为VEGFA的基因。响应VEGFA的BDS具有更多的杂散染色质环境,与其他BDS相比。二价基因的初始激活取决于EZH1诱导的RNAPII暂停,而不是除去H3K27ME3。后来抑制二价基因表达依赖于其与PRC2相互作用的KDM5A募集。重要的是,通过上调EGR3,ezH1在体外和体内血管生成中促进,而KDM5A阻尼血管生成。本研究统称,本研究证明了内皮细胞中BDS的新功能,以控制VEGF反应性和血管生成。

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