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Src-Mediated Phosphorylation of Focal Adhesion Kinase Couples Actin and Adhesion Dynamics to Survival Signaling

机译:Src介导的黏着斑激酶磷酸化将肌动蛋白和黏附动力学耦合到生存信号。

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摘要

Integrin-associated focal adhesions not only provide adhesive links between cellular actin and extracellular matrix but also are sites of signal transmission into the cell interior. Many cell responses signal through focal adhesion kinase (FAK), often by integrin-induced autophosphorylation of FAK or phosphorylation by Src family kinases. Here, we used an interfering FAK mutant (4-9F-FAK) to show that Src-dependent FAK phosphorylation is required for focal adhesion turnover and cell migration, by controlling assembly of a calpain 2/FAK/Src/p42ERK complex, calpain activation, and proteolysis of FAK. Expression of 4-9F-FAK in FAK-deficient fibroblasts also disrupts F-actin assembly associated with normal adhesion and spreading. In addition, we found that FAK's ability to regulate both assembly and disassembly of the actin and adhesion networks may be linked to regulation of the protease calpain. Surprisingly, we also found that the same interfering 4-9F-FAK mutant protein causes apoptosis of serum-deprived, transformed cells and suppresses anchorage-independent growth. These data show that Src-mediated phosphorylation of FAK acts as a pivotal regulator of both actin and adhesion dynamics and survival signaling, which, in turn, control apparently distinct processes such as cell migration and anchorage-independent growth. This also highlights that dynamic regulation of actin and adhesions (which include the integrin matrix receptors) is critical to signaling output and biological responses.
机译:整联蛋白相关的粘着斑不仅提供细胞肌动蛋白和细胞外基质之间的粘合联系,而且还是信号传递到细胞内部的部位。许多细胞反应通常通过整合素诱导的FAK自磷酸化或Src家族激酶的磷酸化,通过粘着斑激酶(FAK)发出信号。在这里,我们使用了干扰性FAK突变体(4-9F-FAK),通过控制钙蛋白酶2 / FAK / Src / p42ERK复合体的组装,钙蛋白酶激活,表明Src依赖性FAK磷酸化是粘着斑翻转和细胞迁移所必需的以及FAK的蛋白水解作用。 FAK缺乏的成纤维细胞中4-9F-FAK的表达也破坏了F-肌动蛋白装配,与正常的粘附和扩散有关。另外,我们发现FAK调节肌动蛋白和粘附网络组装和拆卸的能力可能与蛋白酶钙蛋白酶的调节有关。令人惊讶地,我们还发现相同的干扰4-9F-FAK突变蛋白引起血清缺乏的转化细胞凋亡并抑制锚定非依赖性生长。这些数据表明,Src介导的FAK磷酸化起着肌动蛋白和粘附动力学以及存活信号转导的关键调节器作用,继而又控制着明显不同的过程,例如细胞迁移和不依赖锚定的生长。这也突显了肌动蛋白和粘附(包括整联蛋白基质受体)的动态调节对于信号输出和生物学反应至关重要。

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