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Characterization of Nfatc1 regulation identifies an enhancer required for gene expression that is specific to pro-valve endocardial cells in the developing heart.

机译:Nfatc1调节的特征鉴定了发育中心脏的瓣膜心内膜细胞特异的基因表达所需的增强子。

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Nfatc1 is an endocardial transcription factor required for development of cardiac valves. Herein, we describe identification and characterization of a tissue-specific enhancer in the first intron of murine Nfatc1 that activates a heterogenic promoter and directs gene expression in a subpopulation of endocardial cells of the developing heart: the pro-valve endocardial cells. This enhancer activity begins on embryonic day (E) 8.5 in endocardial cells at the ventricular end of the atrioventricular canal, intensifies and extends from E9.5 to E11.5 in endocardium along the atrioventricular canal and outflow tract. By E12.5, the enhancer activity is accentuated in endocardial cells of forming valves. Sequential deletion analysis identified that a 250 bp DNA fragment at the 3' end of the intron 1 is required for endocardial-specific activity. This region contains two short conserved sequences hosting a cluster of binding sites for transcription factors, including Nfat and Hox proteins. Electrophoresis mobility shift and chromatin immunoprecipitation assays demonstrated binding of Nfatc1 to the Nfat sites, and inactivation of Nfatc1 downregulated the enhancer activity in pro-valve endocardial cells. By contrast, mutation of the Hox site abolished its specificity, allowing gene expression in non pro-valve endocardium and extracardiac vasculature. Thus, autoregulation of Nfatc1 is required for maintaining high Nfatc1 expression in pro-valve endocardial cells, while suppression through the Hox site prevents its expression outside pro-valve endocardial cells during valve development. Our data demonstrate the first autonomous cell-specific enhancer for pro-valve endocardial cells and delineate a unique transcriptional mechanism that regulates endocardial Nfatc1 expression within developing cardiac valves.
机译:Nfatc1是心脏瓣膜发育所需的心内膜转录因子。在本文中,我们描述了鼠Nfatc1的第一个内含子中组织特异性增强子的鉴定和特征,该内含子激活异源启动子并指导发育中心脏的心内膜细胞亚群中的基因表达:前瓣膜心内膜细胞。这种增强剂的活性从房室管心室末端的心内膜细胞胚胎天(E)8.5开始,沿着房室管和流出道在心内膜中增强并从E9.5扩展到E11.5。通过E12.5,增强剂活性在形成瓣膜的心内膜细胞中增强。顺序缺失分析确定内含子1的内含子1的3'末端需要250 bp的DNA片段。该区域包含两个短的保守序列,该短序列包含一簇转录因子结合位点,包括Nfat和Hox蛋白。电泳迁移率变化和染色质免疫沉淀试验证明Nfatc1与Nfat位点结合,Nfatc1的失活下调了瓣膜前心内膜细胞的增强子活性。相比之下,Hox位点的突变消除了其特异性,从而允许基因在非瓣膜前心内膜和心外血管中表达。因此,Nfatc1的自动调节是维持瓣膜前心内膜细胞中高Nfatc1表达所必需的,而通过Hox位点抑制可防止其在瓣膜发育过程中在瓣膜前心内膜细胞外表达。我们的数据证明了首个用于瓣膜前心内膜细胞的自主细胞特异性增强子,并描绘了一种独特的转录机制,可调节发育中的心脏瓣膜中的心内膜Nfatc1表达。

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