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Analysis of FAK‐associated signaling pathways in the regulation of cell cycle progression

机译:FAK相关信号通路在细胞周期进程调控中的分析

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>Focal adhesion kinase (FAK) is an important mediator of signal transduction pathways initiated by integrins in cell migration, survival and cell cycle regulation. The ability of FAK to mediate integrin signaling in the regulation of cell cycle progression depends on the phosphorylation of Tyr397, which implies a functional significance for the formation of FAK signaling complexes with Src, phosphatidylinositol-3-kinase (PI3K) and Grb7. We have previously described a FAK mutant, D395A, that selectively disrupts FAK binding to PI3K, but allows FAK association with Src. Using this mutation in a mislocalized FAK mutant background, we show here that formation of a FAK/PI3K complex is not sufficient for cell cycle progression but the formation of a FAK/Src complex plays an essential role. We also show that mutation of D395 to A disrupted FAK association with Grb7. This suggests that a FAK/Grb7 complex is not involved in the cell cycle regulation either, which is supported by direct analysis of cells expressing a dominant negative Grb7 construct. Finally, we provide evidence that the Src-dependent association of FAK with Grb2 and p130Cas are both required for the regulation of cell cycle progression by FAK. Together, these studies identify important FAK downstream signaling pathways in cell cycle regulation.
机译:粘着斑激酶(FAK)是整合素在细胞迁移,存活和细胞周期调控中引发的信号转导途径的重要介体。 FAK在调节细胞周期进程中介导整联蛋白信号传导的能力取决于Tyr397的磷酸化,这暗示着与Src,磷脂酰肌醇3-激酶(PI3K)和Grb7形成FAK信号传导复合物的功能意义。先前我们已经描述了FAK突变体D395A,该突变体选择性破坏FAK与PI3K的结合,但允许FAK与Src结合。在错误定位的FAK突变体背景下使用此突变,我们在这里显示FAK / PI3K复合物的形成不足以促进细胞周期进程,但是FAK / Src复合物的形成起着至关重要的作用。我们还显示D395突变为A破坏了与Grb7的FAK结合。这表明FAK / Grb7复合物也不参与细胞周期调节,这由表达显性负性Grb7构建体的细胞的直接分析所支持。最后,我们提供了证据,FAK调控细胞周期进程均需要FAK与Grb2和p130 Cas 的Src依赖性结合。总之,这些研究确定了细胞周期调控中重要的FAK下游信号通路。

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