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Src kinase activation by direct interaction with the integrin β cytoplasmic domain

机译:通过与整合素β细胞质结构域直接相互作用来激活Src激酶

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摘要

Src tyrosine kinases transmit integrin-dependent signals pivotal for cell movement and proliferation. Here, we establish a mechanism for Src activation by integrins. c-Src is shown to bind constitutively and selectively to β3 integrins through an interaction involving the c-Src SH3 domain and the carboxyl-terminal region of the β3 cytoplasmic tail. Clustering of β3 integrins in vivo activates c-Src and induces phosphorylation of Tyr-418 in the c-Src activation loop, a reaction essential for adhesion-dependent phosphorylation of Syk, a c-Src substrate. Unlike c-Src, Hck, Lyn, and c-Yes bind more generally to β1 A, β2, and β3 cytoplasmic tails. These results invoke a model whereby Src is primed for activation by direct interaction with an integrin β tail, and integrin clustering stabilizes activated Src by inducing intermolecular autophosphorylation. The data provide a paradigm for integrin regulation of Src and a molecular basis for the similar functional defects of osteoclasts or platelets from mice lacking β3 integrins or c-Src.
机译:Src酪氨酸激酶传递整合素依赖性信号,这些信号对于细胞的移动和增殖至关重要。在这里,我们建立了一个由整合素激活Src的机制。已显示,c-Src通过涉及c-Src SH3结构域和β3细胞质尾部的羧基末端区域的相互作用,构成并选择性地与β3整联蛋白结合。 β3整合素在体内的聚集会激活c-Src并在c-Src激活环中诱导Tyr-418的磷酸化,这是依赖粘附的Syk(一种c-Src底物)磷酸化所必需的反应。与c-Src不同,Hck,Lyn和c-Yes更普遍地与β1A,β2和β3胞质尾结合。这些结果调用了一个模型,其中Src通过与整联蛋白β尾巴直接相互作用而被激活激活,并且整联蛋白簇通过诱导分子间自磷酸化作用来稳定活化的Src。这些数据为Src的整联蛋白调节提供了范例,为缺乏β3整合素或c-Src的小鼠的破骨细胞或血小板的类似功能缺陷提供了分子基础。

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