首页> 外文期刊>The Journal of Experomental Medicine >Orphan nuclear receptor TR3/Nur77 regulates VEGF-A–induced angiogenesis through its transcriptional activity
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Orphan nuclear receptor TR3/Nur77 regulates VEGF-A–induced angiogenesis through its transcriptional activity

机译:孤儿核受体TR3 / Nur77通过其转录活性调节VEGF-A诱导的血管生成

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Vascular endothelial growth factor (VEGF)-A has essential roles in vasculogenesis and angiogenesis, but the downstream steps and mechanisms by which human VEGF-A acts are incompletely understood. We report here that human VEGF-A exerts much of its angiogenic activity by up-regulating the expression of TR3 (mouse homologue Nur77), an immediate-early response gene and orphan nuclear receptor transcription factor previously implicated in tumor cell, lymphocyte, and neuronal growth and apoptosis. Overexpression of TR3 in human umbilical vein endothelial cells (HUVECs) resulted in VEGF-A–independent proliferation, survival, and induction of several cell cycle genes, whereas expression of antisense TR3 abrogated the response to VEGF-A in these assays and also inhibited tube formation. Nur77 was highly expressed in several types of VEGF-A–dependent pathological angiogenesis in vivo. Also, using a novel endothelial cell-selective retroviral targeting system, overexpression of Nur77 DNA potently induced angiogenesis in the absence of exogenous VEGF-A, whereas Nur77 antisense strongly inhibited VEGF-A–induced angiogenesis. B16F1 melanoma growth and angiogenesis were greatly inhibited in Nur77?/? mice. Mechanistic studies with TR3/Nur77 mutants revealed that TR3/Nur77 exerted most of its effects on cultured HUVECs and its pro-angiogenic effects in vivo, through its transactivation and DNA binding domains (i.e., through transcriptional activity).
机译:血管内皮生长因子(VEGF)-A在血管生成和血管生成中具有重要作用,但人类VEGF-A作用的下游步骤和机制尚不完全清楚。我们在此报告,人类VEGF-A通过上调TR3(小鼠同源物Nur77)的表达而发挥其大部分血管生成活性,TR3是一种早期早期反应基因,以前与肿瘤细胞,淋巴细胞和神经元有关,具有孤儿核受体转录因子。生长和凋亡。人脐静脉内皮细胞(HUVECs)中TR3的过表达导致VEGF-A独立的增殖,存活和几种细胞周期基因的诱导,而反义TR3的表达废除了这些测定法中对VEGF-A的反应,并抑制了管编队。 Nur77在几种类型的VEGF-A依赖的体内病理性血管生成中高表达。另外,使用新型内皮细胞选择性逆转录病毒靶向系统,在没有外源性VEGF-A的情况下,Nur77 DNA的过表达可有效诱导血管生成,而Nur77反义强烈抑制VEGF-A诱导的血管生成。 B16F1黑色素瘤的生长和血管生成在Nur77α/β中被大大抑制。老鼠。用TR3 / Nur77突变体进行的机理研究表明,TR3 / Nur77通过其反式激活和DNA结合域(即通过转录活性)对培养的HUVEC发挥了大部分作用,并在体内发挥了促血管生成作用。

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