Structural diversity and dynamics of microtubules and polymorphic tubulin assemblies

E. Unger, K.J. Böhm, W. Vater
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引用次数: 81

Abstract

Tubulin, the main protein of microtubules (MTs), has the potency of forming a variety of other assembly products in vitro: rings, ring-crystals, C- and S-shaped ribbons, 10 nm fibres, hoops, sheets, heaped sheets, MT doublets, MT triplets, double-wall MTs, macrotubules, curled ribbons, and paracrystals. The supramolecular subunits of all of them are the protofilaments which might be arranged either parallel to the axis (e.g., in MTs, ribbons) or curved (e.g., in hoops, macrotubules). There is strong evidence that in the second case the protofilaments have an inside-out orientation compared to MTs. All assembly products mentioned are described structurally and their relevance to the in vivo situation is considered.

Moreover, MTs and the other assemblies undergo permanent changes. These dynamics occuring in both individual assemblies and assembly populations are discussed from the structural point of view.

微管和多态微管蛋白组装的结构多样性和动力学
微管蛋白是微管(MTs)的主要蛋白质,在体外具有形成各种其他组装产物的能力:环状、环状晶体、C形和s形带、10nm纤维、环状、片状、堆片状、微管双联、微管三联、双壁微管、大管、卷曲带和准晶体。它们的超分子亚基都是原丝,原丝可能平行于轴线排列(如MTs、带状),也可能弯曲排列(如环状、大管)。有强有力的证据表明,在第二种情况下,与mt相比,原丝具有内向外的取向。所提到的所有组装产物都在结构上进行了描述,并考虑了它们与体内情况的相关性。此外,mt和其他集会经历永久性的变化。从结构的角度讨论了发生在单个装配体和装配群中的这些动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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