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Structural basis for the extended CAP-Gly domains of p150glued binding to microtubules and the implication for tubulin dynamics

机译:p150扩展的CAP-Gly域与微管结合的结构基础及其对微管蛋白动力学的影响

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摘要

p150glued belongs to a group of proteins accumulating at microtubule plus ends (+TIPs). It plays a key role in initiating retrograde transport by recruiting and tethering endosomes and dynein to microtubules. p150glued contains an N-terminal microtubule-binding cytoskeleton-associated protein glycine-rich (CAP-Gly) domain that accelerates tubulin polymerization. Although this copolymerization is well-studied using light microscopic techniques, structural consequences of this interaction are elusive. Here, using electron-microscopic and spectroscopic approaches, we provide a detailed structural view of p150glued CAP-Gly binding to microtubules and tubulin. Cryo-EM 3D reconstructions of p150glued-CAP-Gly complexed with microtubules revealed the recognition of the microtubule surface, including tubulin C-terminal tails by CAP-Gly. These binding surfaces differ from other retrograde initiation proteins like EB1 or dynein, which could facilitate the simultaneous attachment of all accessory components. Furthermore, the CAP-Gly domain, with its basic extensions, facilitates lateral and longitudinal interactions of tubulin molecules by covering the tubulin acidic tails. This shielding effect of CAP-Gly and its basic extensions may provide a molecular basis of the roles of p150glued in microtubule dynamics.
机译:p150 glued 属于在微管正末端(+ TIP)积累的一组蛋白质。它通过募集内体和动力蛋白并将其束缚在微管中而在逆行运输中起关键作用。 p150 glued 包含一个N末端与微管结合的细胞骨架相关蛋白,富含甘氨酸(CAP-Gly)结构域,可促进微管蛋白的聚合。尽管使用光学显微镜技术对这种共聚进行了很好的研究,但这种相互作用的结构后果却难以捉摸。在这里,我们使用电子显微镜和光谱学方法,提供了p150 glued CAP-Gly与微管和微管蛋白结合的详细结构图。与微管复合的p150 - -CAP-Gly的Cryo-EM 3D重建揭示了CAP-Gly对微管表面(包括微管蛋白C末端尾巴)的识别。这些结合表面不同于其他逆行起始蛋白,如EB1或达因,可促进所有辅助成分的同时附着。此外,CAP-Gly结构域的基本扩展通过覆盖微管蛋白酸性尾部,促进了微管蛋白分子的横向和纵向相互作用。 CAP-Gly的这种屏蔽作用及其基本延伸可为p150 glued 在微管动力学中的作用提供分子基础。

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