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首页> 外文期刊>Angiogenesis >New prospects in the roles of the C-terminal domains of VEGF-A and their cooperation for ligand binding, cellular signaling and vessels formation.
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New prospects in the roles of the C-terminal domains of VEGF-A and their cooperation for ligand binding, cellular signaling and vessels formation.

机译:VEGF-A C末端结构域的作用及其在配体结合,细胞信号传导和血管形成中的合作的新前景。

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摘要

VEGF-A is a crucial growth factor for blood vessel homeostasis and pathological angiogenesis. Due to alternative splicing of its pre-mRNA, VEGF-A is produced under several isoforms characterized by the combination of their C-terminal domains, which determines their respective structure, availability and affinity for co-receptors. As controversies still exist about the specific roles of these exon-encoded domains, we systematically compared the properties of eight natural and artificial variants containing the domains encoded by exons 1-4 and various combinations of the domains encoded by exons 5, 7 and 8a or 8b. All the variants (VEGF111a, VEGF111b, VEGF121a, VEGF121b, VEGF155a, VEGF155b, VEGF165a, VEGF165b) have a similar affinity for VEGF-R2, as determined by Surface plasmon resonance analyses. They strongly differ however in terms of binding to neuropilin-1 and heparin/heparan sulfate proteoglycans. Data indicate that the 6 amino acids encoded by exon 8a must be present and cooperate with those of exons 5 or 7 for efficient binding, which was confirmed in cell culture models. We further showed that VEGF165b has inhibitory effects in vitro, as previously reported, but that the shortest VEGF variant possessing also the 6 amino acids encoded by exon 8b (VEGF111b) is remarkably proangiogenic, demonstrating the critical importance of domain interactions for defining the VEGF properties. The number, size and localization of newly formed blood vessels in a model of tumour angiogenesis strongly depend also on the C-terminal domain composition, suggesting that association of several VEGF isoforms may be more efficient for treating ischemic diseases than the use of any single variant.
机译:VEGF-A是血管稳态和病理性血管生成的关键生长因子。由于其前mRNA的可变剪接,VEGF-A在几种同工型下产生,这些同工型以其C端结构域的组合为特征,这决定了它们各自的结构,可用性和对共受体的亲和力。由于关于这些外显子编码域的具体作用仍然存在争议,我们系统地比较了八个天然和人工变体的性质,这些变体包含外显子1-4编码的域和外显子5、7和8a或外显子编码的域的各种组合8b。通过表面等离振子共振分析确定,所有变体(VEGF111a,VEGF111b,VEGF121a,VEGF121b,VEGF155a,VEGF155b,VEGF165a,VEGF165b)对VEGF-R2具有相似的亲和力。然而,它们在结合Neuropilin-1和肝素/硫酸乙酰肝素蛋白聚糖方面有很大的不同。数据表明,必须存在外显子8a编码的6个氨基酸,并与外显子5或7的氨基酸配合才能有效结合,这在细胞培养模型中得到了证实。我们进一步显示,如先前报道,VEGF165b在体外具有抑制作用,但是最短的VEGF变体同时具有外显子8b(VEGF111b)编码的6个氨基酸,具有显着的促血管生成作用,表明域相互作用对于定义VEGF特性至关重要。 。在肿瘤血管生成模型中新形成血管的数量,大小和位置也强烈取决于C端域组成,这表明与使用任何单一变异体相比,几种VEGF同工型的联合可能更有效地治疗缺血性疾病。

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