首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Urokinase-type Plasminogen Activator (uPA) Promotes Angiogenesis by Attenuating Proline-rich Homeodomain Protein (PRH) Transcription Factor Activity and De-repressing Vascular Endothelial Growth Factor (VEGF) Receptor Expression
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Urokinase-type Plasminogen Activator (uPA) Promotes Angiogenesis by Attenuating Proline-rich Homeodomain Protein (PRH) Transcription Factor Activity and De-repressing Vascular Endothelial Growth Factor (VEGF) Receptor Expression

机译:尿激酶型纤溶酶原激活物(uPA)通过减弱富含脯氨酸的Homeodomain蛋白(PRH)转录因子活性和抑制血管内皮生长因子(VEGF)受体表达来促进血管生成

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摘要

Urokinase-type plasminogen activator (uPA) regulates angiogenesis and vascular permeability through proteolytic degradation of extracellular matrix and intracellular signaling initiated upon its binding to uPAR/CD87 and other cell surface receptors. Here, we describe an additional mechanism by which uPA regulates angiogenesis. Ex vivo VEGF-induced vascular sprouting from Matrigel-embedded aortic rings isolated from uPA knock-out (uPA−/−) mice was impaired compared with vessels emanating from wild-type mice. Endothelial cells isolated from uPA−/− mice show less proliferation and migration in response to VEGF than their wild type counterparts or uPA−/− endothelial cells in which expression of wild type uPA had been restored. We reported previously that uPA is transported from cell surface receptors to nuclei through a mechanism that requires its kringle domain. Intranuclear uPA modulates gene transcription by binding to a subset of transcription factors. Here we report that wild type single-chain uPA, but not uPA variants incapable of nuclear transport, increases the expression of cell surface VEGF receptor 1 (VEGFR1) and VEGF receptor 2 (VEGFR2) by translocating to the nuclei of ECs. Intranuclear single-chain uPA binds directly to and interferes with the function of the transcription factor hematopoietically expressed homeodomain protein or proline-rich homeodomain protein (HHEX/PRH), which thereby lose their physiologic capacity to repress the activity of vehgr1 and vegfr2 gene promoters. These studies identify uPA-dependent de-repression of vegfr1 and vegfr2 gene transcription through binding to HHEX/PRH as a novel mechanism by which uPA mediates the pro-angiogenic effects of VEGF and identifies a potential new target for control of pathologic angiogenesis.
机译:尿激酶型纤溶酶原激活剂(uPA)通过蛋白水解降解细胞外基质和结合uPAR / CD87和其他细胞表面受体而引发的细胞内信号传导来调节血管生成和血管通透性。在这里,我们描述了uPA调节血管生成的其他机制。与野生型小鼠血管相比,从uPA敲除(uPA -/-)小鼠中分离的基质胶包埋的主动脉环对离体VEGF诱导的血管萌发有损害。从uPA -/-小鼠中分离出的内皮细胞对VEGF的增殖和迁移要比野生型或uPA -/-内皮细胞中的野生型表达少uPA已恢复。我们以前曾报道过,uPA通过需要其kringle结构域的机制从细胞表面受体转运至细胞核。核内uPA通过与转录因子的一部分结合来调节基因转录。在这里,我们报告野生型单链uPA,但不是不能进行核转运的uPA变体,通过转移到EC的核中来增加细胞表面VEGF受体1(VEGFR1)和VEGF受体2(VEGFR2)的表达。核内单链uPA直接结合并干扰转录因子造血表达的同源域蛋白或富含脯氨酸的同源域蛋白(HHEX / PRH)的功能,从而失去其抑制vehgr1和vegfr2基因启动子活性的生理能力。这些研究发现通过结合HHEX / PRH,uPA依赖性的vegfr1和vegfr2基因转录的抑制是一种新的机制,uPA通过这种机制介导VEGF的促血管生成作用,并确定了控制病理性血管生成的潜在新靶标。

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