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踝蛋白对Iγ型磷脂酰肌醇磷酸激酶(PIPKIγ)磷酸化调节的粘着斑靶向作用的结构基础

Structural basis for the phosphorylation-regulated focal adhesion targeting of type Igamma phosphatidylinositol phosphate kinase (PIPKIgamma) by talin.

作者信息

Kong Xiangming, Wang Xiaoxia, Misra Saurav, Qin Jun

机构信息

Structural Biology Program, Lerner Research Institute, The Cleveland Clinic Foundation, Cleveland State University, OH 44195, USA.

出版信息

J Mol Biol. 2006 May 26;359(1):47-54. doi: 10.1016/j.jmb.2006.02.048. Epub 2006 Mar 23.

Abstract

Phosphatidylinositol-4,5-bisphosphate (PIP2) is a key lipid messenger that regulates myriad diverse cellular signaling pathways. To ensure specificity in disparate cellular events, PIP2 must be localized to specific sub-cellular sites. At PIP2-regulated focal adhesion (FA) sites, such localization is in part mediated via the recruitment and activation of PIP2-producing enzyme, type Igamma phosphatidylinositol phosphate kinase (PIPKIgamma), by a phosphotyrosine binding (PTB) domain of talin. Transient phosphorylation of PIPKIgamma at Y644 regulates the interaction and efficient FA targeting of PIPKIgamma; however, the underlying structural basis remains elusive. We have determined the NMR structure of talin-1 PTB in complex with the Y644-phosphorylated PIPKIgamma fragment (WVpYSPLH). As compared to canonical PTB domains that typically recognize the NPXpY turn motif from a variety of signaling proteins, our structure displays an unusual non-NPXpY-based recognition mode for talin-1 PTB where K(357)RW in beta5 strand forms an antiparallel beta-sheet with the VpYS of PIPKIgamma. A specific electrostatic triad between K357/R358 of talin-1 PTB and the pY644 of PIPKIgamma was observed, which is consistent with the mutagenesis and isothermal calorimetry data. Combined with previous in vivo data, our results provide a framework for understanding how phosphorylation of Y644 in PIPKIgamma promotes its specific interaction with talin-1, leading to efficient local synthesis of PIP2 and dynamic regulation of integrin-mediated FA assembly.

摘要

磷脂酰肌醇-4,5-二磷酸(PIP2)是一种关键的脂质信使,可调节众多不同的细胞信号通路。为确保在不同细胞事件中的特异性,PIP2必须定位于特定的亚细胞位点。在PIP2调节的粘着斑(FA)位点,这种定位部分是通过踝蛋白的磷酸酪氨酸结合(PTB)结构域招募和激活产生PIP2的酶——Iγ型磷脂酰肌醇磷酸激酶(PIPKIγ)来介导的。PIPKIγ在Y644处的瞬时磷酸化调节PIPKIγ的相互作用和有效的FA靶向;然而,其潜在的结构基础仍然不清楚。我们已经确定了与Y644磷酸化的PIPKIγ片段(WVpYSPLH)结合的踝蛋白-1 PTB的核磁共振结构。与通常识别来自多种信号蛋白的NPXpY转角基序的典型PTB结构域相比,我们的结构显示了踝蛋白-1 PTB基于非NPXpY的异常识别模式,其中β5链中的K(357)RW与PIPKIγ的VpYS形成反平行β折叠。观察到踝蛋白-1 PTB的K357/R358与PIPKIγ的pY644之间存在特定的静电三联体,这与诱变和等温滴定量热法数据一致。结合先前的体内数据,我们的结果为理解PIPKIγ中Y644的磷酸化如何促进其与踝蛋白-1的特异性相互作用提供了一个框架,从而导致PIP2的有效局部合成和整合素介导的FA组装的动态调节。

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