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Phosphorylation Controls Autoinhibition of Cytoplasmic Linker Protein-170

机译:磷酸化控制细胞质接头蛋白170的自动抑制。

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Cytoplasmic linker protein (CLIP)-170 is a microtubule (MT) plus-end-tracking protein that regulates MT dynamics and links MT plus ends to different intracellular structures. We have shown previously that intramolecular association between the N and C termini results in autoinhibition of CLIP-170, thus altering its binding to MTs and the dynactin subunit p150Glued (J. Cell Biol. 2004: 166 , 1003–1014). In this study, we demonstrate that conformational changes in CLIP-170 are regulated by phosphorylation that enhances the affinity between the N- and C-terminal domains. By using site-directed mutagenesis and phosphoproteomic analysis, we mapped the phosphorylation sites in the third serine-rich region of CLIP-170. A phosphorylation-deficient mutant of CLIP-170 displays an “open” conformation and a higher binding affinity for growing MT ends and p150Glued as compared with nonmutated protein, whereas a phosphomimetic mutant confined to the “folded back” conformation shows decreased MT association and does not interact with p150Glued. We conclude that phosphorylation regulates CLIP-170 conformational changes resulting in its autoinhibition.
机译:细胞质接头蛋白(CLIP)-170是一种微管(MT)末端追踪蛋白,可调节MT动力学并将MT末端连接至不同的细胞内结构。先前我们已经表明,N和C末端之间的分子内结合会导致CLIP-170的自抑制,从而改变其与MT和dynactin亚基p150 Glued 的结合(J. Cell Biol。2004:166, 1003–1014)。在这项研究中,我们证明CLIP-170的构象变化受到磷酸化的调节,磷酸化增强了N和C末端域之间的亲和力。通过使用定点诱变和磷酸化蛋白质组学分析,我们在CLIP-170的第三个富含丝氨酸的区域中定位了磷酸化位点。与未突变的蛋白质相比,CLIP-170的磷酸化缺陷突变体显示出“开放”构象,并且对生长中的MT末端和p150 Glued 具有更高的结合亲和力,而拟磷酸化突变体则局限于“向后折叠”。 ”构象表明MT关联性降低,并且与p150 Glued 不相互作用。我们得出的结论是,磷酸化调节CLIP-170构象变化,导致其自动抑制。

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