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Molecular Determinants of NOTCH4 Transcription in Vascular Endothelium

机译:血管内皮细胞中NOTCH4转录的分子决定因素。

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The process whereby the primitive vascular network develops into the mature vasculature, known as angiogenic vascular remodeling, is controlled by the Notch signaling pathway. Of the two mammalian Notch receptors expressed in vascular endothelium, Notch1 is broadly expressed in diverse cell types, whereas Notch4 is preferentially expressed in endothelial cells. As mechanisms that confer Notch4 expression were unknown, we investigated how NOTCH4 transcription is regulated in human endothelial cells and in transgenic mice. The NOTCH4 promoter and the 5′ portion of NOTCH4 assembled into an endothelial cell-specific histone modification pattern. Analysis of NOTCH4 primary transcripts in human umbilical vein endothelial cells by RNA fluorescence in situ hybridization revealed that 36% of the cells transcribed one or both NOTCH4 alleles. The NOTCH4 promoter was sufficient to confer endothelial cell-specific transcription in transfection assays, but intron 1 or upstream sequences were required for expression in the vasculature of transgenic mouse embryos. Cell-type-specific activator protein 1 (AP-1) complexes occupied NOTCH4 chromatin and conferred endothelial cell-specific transcription. Vascular angiogenic factors activated AP-1 and reprogrammed the endogenous NOTCH4 gene in HeLa cells from a repressed to a transcriptionally active state. These results reveal an AP-1-Notch4 pathway, which we propose to be crucial for transducing angiogenic signals and to be deregulated upon aberrant signal transduction in cancer.
机译:原始血管网络发展成成熟脉管系统的过程称为血管生成性血管重塑,受Notch信号通路控制。在血管内皮中表达的两个哺乳动物Notch受体中,Notch1在多种细胞类型中广泛表达,而Notch4在内皮细胞中优先表达。由于尚不清楚Notch4表达的机制,因此我们研究了在人内皮细胞和转基因小鼠中 NOTCH4 转录的调控方式。 NOTCH4 启动子和 NOTCH4 的5'部分组装成内皮细胞特异性组蛋白修饰模式。通过RNA荧光原位杂交技术分析人脐静脉内皮细胞中的 NOTCH4 主要转录本,发现36%的细胞转录了一个或两个 NOTCH4 等位基因。在转染试验中, NOTCH4 启动子足以赋予内皮细胞特异性转录,但在转基因小鼠胚胎的脉管系统中表达需要内含子1或上游序列。细胞类型特异性激活蛋白1(AP-1)复合物占据 NOTCH4 染色质并赋予内皮细胞特异性转录。血管血管生成因子激活了AP-1,并将HeLa细胞中的内源性 NOTCH4 基因从抑制状态重新激活为转录活性状态。这些结果揭示了AP-1-Notch4途径,我们提出该途径对于转导血管生成信号至关重要,并在癌症中异常信号转导时被解除调控。

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