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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Interaction of kindlin-2 with integrin beta 3 promotes outside-in signaling responses by the alpha V beta 3 vitronectin receptor
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Interaction of kindlin-2 with integrin beta 3 promotes outside-in signaling responses by the alpha V beta 3 vitronectin receptor

机译:kindlin-2与整合素beta 3的相互作用促进了αV beta 3玻连蛋白受体的由内而外的信号响应

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The bidirectional signaling and hemostatic functions of platelet alpha IIb beta 3 are regulated by kindlin-3 through interactions with the beta 3 cytoplasmic tail. Little is known about kindlin regulation of the related "vitronectin receptor," alpha V beta 3. These relationships were investigated in endothelial cells, which express alpha V beta 3 and kindlin-2 endogenously. "beta 3 Delta RGT" knock-in mice lack the 3 C-terminal beta 3 tail residues, whereas in "beta 3/beta 1(EGK)" mice, RGT is replaced by the corresponding residues of beta 1. The wild-type beta 3 tail pulled down kindlin-2 and c-Src in vitro, whereas beta 3 Delta RGT bound neither protein and beta 3/beta 1(EGK) bound kindlin-2, but not c-Src. beta 3 Delta RGT endothelial cells, but not beta 3/beta 1(EGK) endothelial cells, exhibited migration and spreading defects on vitronectin and reduced sprouting in 3-dimensional fibrin. Short hairpin RNA silencing of kindlin-2, but not c-Src, blocked sprouting by beta 3 wild-type endothelial cells. Moreover, defective sprouting by beta 3 Delta RGT endothelial cells could be rescued by conditional, forced interaction of alpha V beta 3 Delta RGT with kindlin-2. Stimulation of beta 3 Delta RGT endothelial cells led to normal extracellular ligand binding to alpha V beta 3, pin-pointing their defect to one of outside-in alpha V beta 3 signaling. beta 3 Delta RGT mice, but not beta 3/beta 1(EGK) mice, exhibited defects in both developmental and tumor angiogenesis, responses that require endothelial cell function. Thus, the beta 3/kindlin-2 interaction promotes outside-in alpha V beta 3 signaling selectively, with biological consequences in vivo.
机译:血小板αIIbβ3的双向信号传导和止血功能受kindlin-3通过与β3细胞质尾巴的相互作用调节。对有关“玻连蛋白受体”αV beta 3的kindlin调节知之甚少。在内皮细胞中研究了这些关系,内皮细胞内源性表达αV beta 3和kindlin-2。 “β3 Delta RGT”敲入小鼠缺少3个C端β3尾部残基,而在“β3 / beta 1(EGK)”小鼠中,RGT被β1的相应残基取代。 β3尾巴在体外下拉了kindlin-2和c-Src,而beta 3 Delta RGT既不结合蛋白,β3 / beta 1(EGK)则不结合kindlin-2,但不结合c-Src。 beta 3三角洲RGT内皮细胞,但不是beta 3 / beta 1(EGK)内皮细胞,在玻连蛋白上表现出迁移和扩散缺陷,并在3维纤维蛋白中减少发芽。 kindlin-2的短发夹RNA沉默,但c-Src沉默,阻止了beta 3野生型内皮细胞的发芽。此外,可以通过αVβ3 Delta RGT与kindlin-2的条件性强制相互作用来挽救β3 Delta RGT内皮细胞发芽不良。 β3 Delta RGT内皮细胞的刺激导致正常的细胞外配体与αV beta 3结合,将它们的缺陷指向外部-外部αV beta 3信号传导之一。 beta 3三角洲RGT小鼠,但不是beta 3 / beta 1(EGK)小鼠,在发育和肿瘤血管生成中均显示出缺陷,这些响应需要内皮细胞功能。因此,β3 / kindlin-2相互作用选择性地促进了由内而外的αVβ3信号传导,并在体内产生生物学后果。

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