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Multiple paxillin binding sites regulate FAK function

机译:多个Paxillin结合位点调节FAK功能

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BackgroundFAK localization to focal adhesions is essential for its activation and function. Localization of FAK is mediated through the C-terminal focal adhesion targeting (FAT) domain. Recent structural analyses have revealed two paxillin-binding sites in the FAT domain of FAK. To define the role of paxillin binding to each site on FAK, point mutations have been engineered to specifically disrupt paxillin binding to each docking site on the FAT domain of FAK individually or in combination.ResultsThese mutants have been characterized and reveal an important role for paxillin binding in FAK subcellular localization and signaling. One paxillin-binding site (comprised of α-helices 1 and 4 of the FAT domain) plays a more prominent role in localization than the other. Mutation of either paxillin-binding site has similar effects on FAK activation and downstream signaling. However, the sites aren't strictly redundant as each mutant exhibits phosphorylation/signaling defects distinct from wild type FAK and a mutant completely defective for paxillin binding.ConclusionThe studies demonstrate that the two paxillin-binding sites of FAK are not redundant and that both sites are required for FAK function.
机译:背景FAK定位于粘着斑对其激活和功能至关重要。 FAK的定位是通过C末端粘着靶向(FAT)域介导的。最近的结构分析已经揭示了FAK的FAT结构域中的两个paxillin结合位点。为了确定Paxillin与FAK的每个位点结合的作用,我们设计了点突变来特异性破坏Paxillin与FAK的FAT结构域上的每个对接位点的结合。结果这些突变体已被鉴定并显示了Paxillin的重要作用FAK亚细胞定位和信号传导中的结合。一个Paxillin结合位点(由FAT域的α螺旋1和4组成)在定位中比另一个更重要。任一Paxillin结合位点的突变对FAK激活和下游信号传导具有相似的影响。然而,这些位点并不是严格冗余的,因为每个突变体都表现出不同于野生型FAK的磷酸化/信号缺陷和一个完全缺乏paxillin结合的突变体。结论研究表明,FAK的两个paxillin结合位点不是多余的,并且两个位点FAK功能是必需的。

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