首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >CrkII regulates focal adhesion kinase activation by making a complex with Crk-associated substrate, p130Cas.
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CrkII regulates focal adhesion kinase activation by making a complex with Crk-associated substrate, p130Cas.

机译:CrkII通过与Crk相关底物p130Cas形成复合物来调节粘着斑激酶活化。

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CrkII is an adaptor protein possessing oncogenic potential despite the lack of an enzymatic domain. We investigated here the physiological functions of CrkII by studying its ability to induce anchorage-independent cell growth. We found that inhibition or null mutation of focal adhesion kinase (FAK) blocked the anchorage-independent growth induced by CrkII overexpression, indicating that FAK is a critical determinant of the transforming activity of CrkII. CrkII overexpression enhanced the autophosphorylation of FAK at Tyr-397 and tyrosine phosphorylation of p130(Cas) (Crk-associated substrate, Cas) upon stimulation of integrin by fibronectin. Moreover, the constitutive phosphorylation of FAK and Cas was observed in CrkII-overexpressing cells, even when they were in the suspended condition, consistent with the ability of CrkII to induce anchorage-independent growth. Using Cas-deficient cells, we showed Cas function to be essential for both the CrkII-induced phosphorylation of FAK (Tyr-397) and anchorage-independent cell growth. The CrkII-induced FAK autophosphorylation depended upon CrkII-Cas complex formation. Furthermore, we showed that CrkII knockdown resulted in defects in integrin-mediated events, such as cell spreading, haptotactic migration, and FAK autophosphorylation. The integrin-mediated FAK autophosphorylation was also reduced in Cas-deficient cells. These results suggest that the CrkII-Cas complex functions in integrin-mediated FAK activation signaling. Our findings show the importance of CrkII in integrin-mediated events, acting upstream of FAK to affect the activation of this kinase, which appears to have a central role in this pathway.
机译:尽管缺乏酶促结构域,CrkII是具有致癌潜力的衔接蛋白。我们在这里通过研究CrkII诱导锚定非依赖性细胞生长的能力来研究其生理功能。我们发现抑制或粘着斑激酶(FAK)的零突变阻止了由CrkII过表达诱导的锚定非依赖性生长,表明FAK是CrkII转化活性的关键决定因素。 CrkII的过表达增强了纤连蛋白刺激整联蛋白后Tyr-397处FAK的自磷酸化和p130(Cas)(与Crk相关的底物,Cas)的酪氨酸磷酸化。此外,即使在处于悬浮状态的CrkII过表达细胞中,也观察到FAK和Cas的组成型磷酸化,这与CrkII诱导锚定非依赖性生长的能力一致。使用缺乏Cas的细胞,我们显示出Cas功能对于CrkII诱导的FAK(Tyr-397)磷酸化和锚定非依赖性细胞生长都是必不可少的。 CrkII诱导的FAK自磷酸化取决于CrkII-Cas复合物的形成。此外,我们表明CrkII敲低导致整合素介导的事件的缺陷,例如细胞扩散,触觉迁移和FAK自磷酸化。在缺Cas的细胞中,整合素介导的FAK自磷酸化也降低了。这些结果表明CrkII-Cas复合体在整联蛋白介导的FAK激活信号传导中起作用。我们的发现表明CrkII在整联蛋白介导的事件中的重要性,该事件在FAK的上游起作用以影响该激酶的激活,这似乎在该途径中起着核心作用。

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