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Activation of a vinculin-binding site in the talin rod involves rearrangement of a five-helix bundle

机译:塔林棒中新蛋白结合位点的激活涉及五螺旋束的重排

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摘要

The interaction between the cytoskeletal proteins talin and vinculin plays a key role in integrin-mediated cell adhesion and migration. We have determined the crystal structures of two domains from the talin rod spanning residues 482–789. Talin 482–655, which contains a vinculin-binding site (VBS), folds into a five-helix bundle whereas talin 656–789 is a four-helix bundle. We show that the VBS is composed of a hydrophobic surface spanning five turns of helix 4. All the key side chains from the VBS are buried and contribute to the hydrophobic core of the talin 482–655 fold. We demonstrate that the talin 482–655 five-helix bundle represents an inactive conformation, and mutations that disrupt the hydrophobic core or deletion of helix 5 are required to induce an active conformation in which the VBS is exposed. We also report the crystal structure of the N-terminal vinculin head domain in complex with an activated form of talin. Activation of the VBS in talin and the recruitment of vinculin may support the maturation of small integrin/talin complexes into more stable adhesions.
机译:细胞骨架蛋白塔林和新蛋白之间的相互作用在整联蛋白介导的细胞粘附和迁移中起关键作用。我们已经确定了塔林棒跨越残基482-789的两个区域的晶体结构。塔林482–655包含纽蛋白结合位点(VBS),可折叠成五螺旋束,而塔林656–789是四螺旋束。我们显示VBS由跨越5圈螺旋4的疏水表面组成。来自VBS的所有关键侧链均被掩埋,并有助于塔林482–655折叠的疏水核。我们证明,塔林482-655五螺旋束代表一种非活性构象,并且需要破坏疏水核心或5号螺旋缺失的突变来诱导暴露VBS的活性构象。我们还报告了与活化形式的塔林复合物的N末端接头蛋白头部结构域的晶体结构。塔林中VBS的活化和新蛋白的募集可以支持小整合素/塔林复合物成熟为更稳定的粘连。

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