首页> 外文期刊>The Journal of biological chemistry >Calcium and Calmodulin-dependent Serine/Threonine Protein Kinase Type II (CaMKII)-mediated Intramolecular Opening of Integrin Cytoplasmic Domain-associated Protein-1 (ICAP-1α) Negatively Regulates β1 Integrins
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Calcium and Calmodulin-dependent Serine/Threonine Protein Kinase Type II (CaMKII)-mediated Intramolecular Opening of Integrin Cytoplasmic Domain-associated Protein-1 (ICAP-1α) Negatively Regulates β1 Integrins

机译:钙和钙调蛋白依赖性丝氨酸/苏氨酸蛋白激酶II(Camkii)介导的整联素细胞质结构域相关蛋白-1(ICAP-1α)的分子分子开口负调节β1整合蛋白

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Focal adhesion turnover during cell migration is an integrated cyclic process requiring tight regulation of integrin function. Interaction of integrin with its ligand depends on its activation state, which is regulated by the direct recruitment of proteins onto the β integrin chain cytoplasmic domain. We previously reported that ICAP-1α, a specific cytoplasmic partner of β1A integrins, limits both talin and kindlin interaction with β1 integrin, thereby restraining focal adhesion assembly. Here we provide evidence that the calcium and calmodulin-dependent serine/threonine protein kinase type II (CaMKII) is an important regulator of ICAP-1α for controlling focal adhesion dynamics. CaMKII directly phosphorylates ICAP-1α and disrupts an intramolecular interaction between the N- and the C-terminal domains of ICAP-1α, unmasking the PTB domain, thereby permitting ICAP-1α binding onto the β1 integrin tail. ICAP-1α direct interaction with the β1 integrin tail and the modulation of β1 integrin affinity state are required for down-regulating focal adhesion assembly. Our results point to a molecular mechanism for the phosphorylation-dependent control of ICAP-1α function by CaMKII, allowing the dynamic control of β1 integrin activation and cell adhesion.
机译:细胞迁移期间的焦粘连是一种需要紧密调节整合素功能的综合循环过程。整联蛋白与其配体的相互作用取决于其活化状态,其通过直接募集蛋白质在β整联蛋白链细胞质结构域中调节。我们之前报道了ICAP-1α,β1a整合蛋白的特异性细胞质合作伙伴,限制了与β1整合蛋白的山雀和科林林相互作用,从而限制了焦粘连组件。在这里,我们提供了证据表明钙和钙调蛋白依赖性丝氨酸/苏氨酸蛋白激酶II(CAMKII)是用于控制局灶性粘附动态的ICAP-1α的重要调节剂。 Camkii直接磷酸化ICAP-1α并破坏ICAP-1α的N-和C末端结构域之间的分子内相互作用,取消掩蔽PTB结构域,从而允许ICAP-1α结合到β1整合蛋白尾部。 ICAP-1α与β1整合蛋白尾部的直接相互作用以及β1整合蛋白亲和力的调节,用于降压焦粘连组件。我们的结果指出了Camkii对ICAP-1α功能的依赖性控制的分子机制,允许动态控制β1整联蛋白激活和细胞粘附。

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