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RGS-GAIP相互作用蛋白的C末端在血管生成过程中传递神经纤毛蛋白-1介导的信号。

C terminus of RGS-GAIP-interacting protein conveys neuropilin-1-mediated signaling during angiogenesis.

作者信息

Wang Ling, Mukhopadhyay Debabrata, Xu Xiaolei

机构信息

Department Biochemistry and Molecular Biology, Gugg 1401A, Mayo Clinic College of Medicine, 200 First St. SW, Rochester, Minnesota 55905, USA.

出版信息

FASEB J. 2006 Jul;20(9):1513-5. doi: 10.1096/fj.05-5504fje. Epub 2006 Jun 5.

Abstract

Initially, it was thought that there was no intracellular signaling mediated by NRP-1 alone in response to its ligands. However, the emerging data from our group as well as others suggest that the signaling through NRP-1 actually promotes angiogenesis and is mediated through its C-terminal domain and downstream molecules such as phosphoinositide 3-kinase. Hence, understanding the signal transduction pathways mediated by NRP-1 and identification of its downstream molecules are of importance. By using both in vivo zebrafish model and in vitro tissue culture system, we have shown that the C-terminal three amino acids of NRP-1 (SEA-COOH) are required for NRP-1-mediated angiogenesis. Furthermore, knocking down of RGS-GAIP-interacting protein C terminus (GIPC) in zebrafish, which is associated with C-terminal domain of NRP-1, exhibits similar vasculature phenotypes to those from NRP-1 null. Specific and effective silencing of GIPC in vascular endothelium results in inhibition of NRP-1-mediated migration. In both cases as described, PDZ domain of GIPC is responsible for its function. Taken together, our data suggest a novel role of GIPC in angiogenesis and vessel formation and also support our hypothesis that NRP-1 can facilitate downstream signaling to promote angiogenesis through GIPC.

摘要

最初,人们认为单独的神经纤毛蛋白-1(NRP-1)在响应其配体时不会介导细胞内信号传导。然而,我们团队以及其他团队的最新数据表明,通过NRP-1的信号传导实际上促进了血管生成,并通过其C末端结构域和下游分子(如磷酸肌醇3激酶)介导。因此,了解由NRP-1介导的信号转导途径并鉴定其下游分子非常重要。通过使用体内斑马鱼模型和体外组织培养系统,我们已经表明NRP-1介导血管生成需要其C末端的三个氨基酸(SEA-COOH)。此外,在斑马鱼中敲低与NRP-1的C末端结构域相关的RGS-GAIP相互作用蛋白C末端(GIPC),表现出与NRP-1基因敲除相似的血管表型。在血管内皮细胞中特异性和有效地沉默GIPC会导致NRP-1介导的迁移受到抑制。在上述两种情况下,GIPC的PDZ结构域负责其功能。综上所述,我们的数据表明GIPC在血管生成和血管形成中具有新作用,也支持了我们的假设,即NRP-1可以通过GIPC促进下游信号传导以促进血管生成。

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