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Crystal structure of kindlin-2 PH domain reveals a conformational transition for its membrane anchoring and regulation of integrin activation

机译:kindlin-2 PH域的晶体结构揭示了其膜锚定和整联蛋白激活调节的构象转变

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摘要

Kindlin-2 belongs to a subfamily of FERM domain containing proteins, which plays key roles in activating integrin transmembrane receptors and mediating cell adhesion. Compared to conventional FERM domains, kindlin-2 FERM contains an inserted pleckstrin homology (PH) domain that specifically binds to phosphatidylinositol (3,4,5) trisphosphate (PIP3) and regulates the kindlin-2 function. We have determined the crystal structure of kindlin-2 PH domain at 1.9 Å resolution, which reveals a conserved PH domain fold with a highly charged and open binding pocket for PIP3 head group. Structural comparison with a previously reported solution structure of kindlin-2 PH domain bound to PIP3 head group reveals that upon PIP3 insertion, there is a significant conformational change of both the highly positively charged loop at the entry of the PIP3 binding pocket and the entire β barrel of the PH domain. We propose that such “induced-fit” type change is crucial for the tight binding of PIP3 to anchor kindlin-2 onto the membrane surface, thereby promoting its binding to integrins. Our results provide important structural insight into kindlin-2-mediated membrane anchoring and integrin activation.
机译:Kindlin-2属于含有FERM域的蛋白质的一个亚家族,在激活整联蛋白跨膜受体和介导细胞黏附中起关键作用。与常规FERM域相比,kindlin-2 FERM包含一个插入的pleckstrin同源性(PH)域,该域与磷脂酰肌醇(3,4,5)三磷酸(PIP3)特异性结合,并调节kindlin-2的功能。我们已经确定了1.9Å分辨率的kindlin-2 PH结构域的晶体结构,该结构揭示了保守的PH结构域折叠,带有高电荷且PIP3头基开放的结合口袋。与先前报道的与PIP3头部基团结合的kindlin-2 PH域的溶液结构的结构比较表明,插入PIP3时,PIP3结合口袋入口处带正电荷的环和整个β分子都有明显的构象变化PH域的桶。我们提出,这种“诱导适应”类型变化对于PIP3紧密结合将kindlin-2锚定在膜表面上至关重要,从而促进其与整联蛋白的结合。我们的结果提供了对Kinlin-2介导的膜锚定和整联蛋白激活的重要结构见解。

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