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Src Catalytic but Not Scaffolding Function Is Needed for Integrin-Regulated Tyrosine Phosphorylation Cell Migration and Cell Spreading

机译:整合素调节酪氨酸磷酸化细胞迁移和细胞传播需要Src催化但不是脚手架功能。

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摘要

Src family kinases (SFKs) are crucial for signaling through a variety of cell surface receptors, including integrins. There is evidence that integrin activation induces focal adhesion kinase (FAK) autophosphorylation at Y397 and that Src binds to and is activated by FAK to carry out subsequent phosphorylation events. However, it has also been suggested that Src functions as a scaffolding molecule through its SH2 and SH3 domains and that its kinase activity is not necessary. To examine the role of SFKs in integrin signaling, we have expressed various Src molecules in fibroblasts lacking other SFKs. In cells plated on fibronectin, FAK could indeed autophosphorylate at Y397 independently of Src but with lower efficiency than when Src was present. This step was promoted by kinase-inactive Src, but Src kinase activity was required for full rescue. Src kinase activity was also required for phosphorylation of additional sites on FAK and for other integrin-directed functions, including cell migration and spreading on fibronectin. In contrast, Src mutations in the SH2 or SH3 domain greatly reduced binding to FAK, Cas, and paxillin but had little effect on tyrosine phosphorylation or biological assays. Furthermore, our indirect evidence indicates that Src kinase activity does not need to be regulated to promote cell migration and FAK phosphorylation. Although Src clearly plays important roles in integrin signaling, it was not concentrated in focal adhesions. These results indicate that the primary role of Src in integrin signaling is as a kinase. Indirect models for Src function are proposed.
机译:Src家族激酶(SFK)对于通过多种细胞表面受体(包括整联蛋白)进行信号传导至关重要。有证据表明整联蛋白的激活在Y397诱导了粘着斑激酶(FAK)自磷酸化,并且Src与FAK结合并被其激活以进行后续的磷酸化作用。然而,也已经提出,Src通过其SH2和SH3结构域充当支架分子,并且其激酶活性不是必需的。为了检查SFK在整联蛋白信号传导中的作用,我们已经在缺乏其他SFK的成纤维细胞中表达了多种Src分子。在铺在纤连蛋白上的细胞中,FAK确实可以在Y397处自磷酸化,而与Src无关,但效率比存在Src时低。激酶失活的Src促进了这一步骤,但是Src激酶的活性是全面拯救所必需的。 SAK激酶活性对于FAK上其他位点的磷酸化以及其他整合素指导的功能(包括细胞迁移和在纤连蛋白上的铺展)也需要。相比之下,SH2或SH3域中的Src突变大大降低了与FAK,Cas和paxillin的结合,但对酪氨酸磷酸化或生物学检测的影响很小。此外,我们的间接证据表明,无需调节Src激酶活性即可促进细胞迁移和FAK磷酸化。尽管Src显然在整合素信号传导中起重要作用,但它并不集中于粘着斑。这些结果表明Src在整联蛋白信号传导中的主要作用是作为激酶。提出了Src函数的间接模型。

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