转化生长因子- β的氨基酸67和68调节血管内皮细胞与糖基磷脂酰肌醇连接膜蛋白的结合。

K. Zhang, D. Polga, S. Salzman, J. Burmester
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引用次数: 6

摘要

转化生长因子- β (tgf - β)是一种影响几乎所有细胞的多功能生长和分化因子。虽然在许多情况下是相等的,但tgf - β的三种异构体(- β 1, - β 2, - β 3)具有几种重要的异构体特异性活性。例如,tgf - β 2以更高的亲和力结合在血管内皮细胞上表达的60 kDa细胞表面糖基磷脂酰肌醇(GPI)连接蛋白。我们使用嵌合的tgf - β蛋白,其中tgf - β a1的选定区域被替换为tgf - β 2的相应区域,以证明氨基酸67和68调节tgf - β与该蛋白的结合。将TGF-beta1的67和68氨基酸交换为TGF-beta2,产生一种与TGF-beta1结合gpi连接蛋白具有相似亲和力的蛋白。相比之下,仅将TGF-beta1的氨基酸67交换为TGF-beta2,或仅将TGF-beta1的氨基酸68交换为TGF-beta2,则产生与TGF-beta2具有相似亲和力的蛋白。这表明tgf - β的Gln和His在67位和68位向Thr和Ile的协同变化改变了tgf - β的特异性。氨基酸67和68是表面暴露的α -螺旋的一部分,形成远离tgf -分子中心的投影,可以与受体结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amino acids 67 and 68 of transforming growth factor-beta regulate binding to a glycosyl phosphatidyl inositol-linked membrane protein on vascular endothelial cells.
Transforming growth factor-beta (TGF-beta) is a multifunctional growth and differentiation factor that affects almost all cells. Although equipotent in many cases, the three isoforms of TGF-beta (-beta1, -beta2, -beta3) have several important isoform specific activities. For example, TGF-beta2 binds with higher affinity to a 60 kDa cell-surface glycosyl phosphatidylinositol (GPI)-linked protein, expressed on vascular endothelial cells. We used chimeric TGF-beta proteins, in which selected regions of TGF-beta1 had been exchanged for the corresponding region of TGF-beta2, to demonstrate that amino acids 67 and 68 regulate binding of TGF-beta to this protein. Exchange of amino acids 67 and 68 of TGF-beta1 into TGF-beta2 resulted in a protein similar in affinity to TGF-beta1 for binding to the GPI-linked protein. In contrast, exchange of only amino acid 67 of TGF-beta1 into TGF-beta2, or exchange of only amino acid 68 of TGF-beta1 into TGF-beta2, resulted in a protein with affinity similar to that of TGF-beta2. This suggests that the coordinated change of Gln and His of TGF-beta1 to Thr and Ile at positions 67 and 68 alters the specificity of TGF-beta. Amino acids 67 and 68 are part of a surface-exposed alpha-helix that forms a projection away from the center of the TGF-beta molecule and is accessible for receptor binding.
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