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EPDR1 是一种非典型的胰岛素介导的血管生成效应物,受内皮细胞特异性 TGF-β 受体复合物调节。

EPDR1 is a noncanonical effector of insulin-mediated angiogenesis regulated by an endothelial-specific TGF-β receptor complex.

机构信息

Department of Chemistry & Biochemistry, University of Arizona, Tucson, Arizona, USA.

Department of Pharmacology and Cancer Biology, Duke University, Durham, North Carolina, USA.

出版信息

J Biol Chem. 2022 Sep;298(9):102297. doi: 10.1016/j.jbc.2022.102297. Epub 2022 Jul 21.

Abstract

Insulin signaling in blood vessels primarily functions to stimulate angiogenesis and maintain vascular homeostasis through the canonical PI3K and MAPK signaling pathways. However, angiogenesis is a complex process coordinated by multiple other signaling events. Here, we report a distinct crosstalk between the insulin receptor and endoglin/activin receptor-like kinase 1 (ALK1), an endothelial cell-specific TGF-β receptor complex essential for angiogenesis. While the endoglin-ALK1 complex normally binds to TGF-β or bone morphogenetic protein 9 (BMP9) to promote gene regulation via transcription factors Smad1/5, we show that insulin drives insulin receptor oligomerization with endoglin-ALK1 at the cell surface to trigger rapid Smad1/5 activation. Through quantitative proteomic analysis, we identify ependymin-related protein 1 (EPDR1) as a major Smad1/5 gene target induced by insulin but not by TGF-β or BMP9. We found endothelial EPDR1 expression is minimal at the basal state but is markedly enhanced upon prolonged insulin treatment to promote cell migration and formation of capillary tubules. Conversely, we demonstrate EPDR1 depletion strongly abrogates these angiogenic effects, indicating that EPDR1 is a crucial mediator of insulin-induced angiogenesis. Taken together, these results suggest important therapeutic implications for EPDR1 and the TGF-β pathways in pathologic angiogenesis during hyperinsulinemia and insulin resistance.

摘要

血管中的胰岛素信号主要通过经典的 PI3K 和 MAPK 信号通路发挥作用,刺激血管生成并维持血管稳态。然而,血管生成是一个由多个其他信号事件协调的复杂过程。在这里,我们报告了胰岛素受体和内皮细胞特异性 TGF-β 受体复合物 endoglin/activin 受体样激酶 1(ALK1)之间的一种独特串扰,该复合物对于血管生成至关重要。虽然 endoglin-ALK1 复合物通常与 TGF-β 或骨形态发生蛋白 9(BMP9)结合,通过转录因子 Smad1/5 促进基因调控,但我们表明胰岛素在细胞表面驱动胰岛素受体与 endoglin-ALK1 的寡聚化,从而触发 Smad1/5 的快速激活。通过定量蛋白质组学分析,我们确定 ependymin 相关蛋白 1(EPDR1)是胰岛素而非 TGF-β 或 BMP9 诱导的主要 Smad1/5 基因靶点。我们发现内皮细胞 EPDR1 的表达在基础状态下很少,但在长时间胰岛素处理后会显著增强,从而促进细胞迁移和毛细血管管腔的形成。相反,我们证明 EPDR1 耗竭强烈阻断这些血管生成作用,表明 EPDR1 是胰岛素诱导的血管生成的关键介质。综上所述,这些结果表明 EPDR1 和 TGF-β 通路在高胰岛素血症和胰岛素抵抗期间病理性血管生成中的重要治疗意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f36c/9396412/4ef18823d5e7/gr1.jpg

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