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神经纤毛蛋白-1 选择性结合 VEGF-A 的机制揭示了特定配体抑制的基础。

Mechanism of selective VEGF-A binding by neuropilin-1 reveals a basis for specific ligand inhibition.

机构信息

Department of Molecular and Cellular Biochemistry and Center for Structural Biology, University of Kentucky, Lexington, Kentucky, United States of America.

出版信息

PLoS One. 2012;7(11):e49177. doi: 10.1371/journal.pone.0049177. Epub 2012 Nov 8.

Abstract

Neuropilin (Nrp) receptors function as essential cell surface receptors for the Vascular Endothelial Growth Factor (VEGF) family of proangiogenic cytokines and the semaphorin 3 (Sema3) family of axon guidance molecules. There are two Nrp homologues, Nrp1 and Nrp2, which bind to both overlapping and distinct members of the VEGF and Sema3 family of molecules. Nrp1 specifically binds the VEGF-A(164/5) isoform, which is essential for developmental angiogenesis. We demonstrate that VEGF-A specific binding is governed by Nrp1 residues in the b1 coagulation factor domain surrounding the invariant Nrp C-terminal arginine binding pocket. Further, we show that Sema3F does not display the Nrp-specific binding to the b1 domain seen with VEGF-A. Engineered soluble Nrp receptor fragments that selectively sequester ligands from the active signaling complex are an attractive modality for selectively blocking the angiogenic and chemorepulsive functions of Nrp ligands. Utilizing the information on Nrp ligand binding specificity, we demonstrate Nrp constructs that specifically sequester Sema3 in the presence of VEGF-A. This establishes that unique mechanisms are used by Nrp receptors to mediate specific ligand binding and that these differences can be exploited to engineer soluble Nrp receptors with specificity for Sema3.

摘要

神经纤毛蛋白 (Nrp) 受体作为血管内皮生长因子 (VEGF) 家族促血管生成细胞因子和神经导向分子 semaphorin 3 (Sema3) 家族的重要细胞表面受体发挥作用。有两种 Nrp 同源物,Nrp1 和 Nrp2,它们与 VEGF 和 Sema3 家族的分子的重叠和独特成员结合。Nrp1 特异性结合 VEGF-A(164/5) 异构体,这对于发育中的血管生成是必不可少的。我们证明,VEGF-A 的特异性结合受 Nrp1 残基控制,这些残基位于 Nrp C 末端精氨酸结合口袋周围的 b1 凝血因子结构域。此外,我们表明 Sema3F 不显示与 VEGF-A 所见的 Nrp 特异性结合到 b1 结构域。工程化的可溶性 Nrp 受体片段选择性地将配体从活性信号复合物中隔离出来,是一种有吸引力的方式,可以选择性地阻断 Nrp 配体的血管生成和趋化性功能。利用关于 Nrp 配体结合特异性的信息,我们证明了在存在 VEGF-A 的情况下,Nrps 构建体特异性地隔离 Sema3。这表明 Nrp 受体使用独特的机制来介导特异性配体结合,并且可以利用这些差异来设计具有 Sema3 特异性的可溶性 Nrp 受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f36/3493496/19ffa07495ff/pone.0049177.g001.jpg

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