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微管聚合酶及其肿瘤过表达基因(TOG)结构域阵列招募和组装微管的结构基础。

Structural basis of tubulin recruitment and assembly by microtubule polymerases with tumor overexpressed gene (TOG) domain arrays.

机构信息

Molecular Cellular Biology Department, University of California, Davis, United States.

Department of Cell and Tissue Biology, University of California, San Francisco, United States.

出版信息

Elife. 2018 Nov 13;7:e38922. doi: 10.7554/eLife.38922.

Abstract

XMAP215/Stu2/Alp14 proteins accelerate microtubule plus-end polymerization by recruiting tubulins via arrays of tumor overexpressed gene (TOG) domains, yet their mechanism remains unknown. Here, we describe the biochemical and structural basis for TOG arrays in recruiting and polymerizing tubulins. Alp14 binds four tubulins via dimeric TOG1-TOG2 subunits, in which each domain exhibits a distinct exchange rate for tubulin. X-ray structures revealed square-shaped assemblies composed of pseudo-dimeric TOG1-TOG2 subunits assembled head-to-tail, positioning four unpolymerized tubulins in a polarized wheel-like configuration. Crosslinking and electron microscopy show Alp14-tubulin forms square assemblies in solution, and inactivating their interfaces destabilize this organization without influencing tubulin binding. An X-ray structure determined using approach to modulate tubulin polymerization revealed an unfurled assembly, in which TOG1-TOG2 uniquely bind to two polymerized tubulins. Our findings suggest a new microtubule polymerase model in which TOG arrays recruit tubulins by forming square assemblies that then unfurl, facilitating their concerted polymerization into protofilaments.

摘要

XMAP215/Stu2/Alp14 蛋白通过肿瘤过表达基因 (TOG) 结构域的阵列招募微管蛋白来加速微管的正极聚合,但它们的机制仍不清楚。在这里,我们描述了 TOG 阵列招募和聚合微管蛋白的生化和结构基础。Alp14 通过二聚体 TOG1-TOG2 亚基结合四个微管蛋白,其中每个结构域对微管蛋白的交换率都不同。X 射线结构揭示了由头对头组装的假二聚体 TOG1-TOG2 亚基组成的方形组装,将四个未聚合的微管蛋白定位在极化轮状构象中。交联和电子显微镜显示 Alp14-微管蛋白在溶液中形成方形组装,而使其界面失活会破坏这种组织,而不影响微管蛋白结合。使用一种调节微管蛋白聚合的方法确定的 X 射线结构揭示了一个展开的组装,其中 TOG1-TOG2 独特地结合到两个聚合的微管蛋白上。我们的发现表明了一种新的微管蛋白聚合酶模型,其中 TOG 阵列通过形成正方形组装来招募微管蛋白,然后展开这些组装,促进它们协同聚合形成原纤维。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/422d/6251626/92a996e2152a/elife-38922-fig1.jpg

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