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GDP-微管蛋白掺入正在生长的微管中调节聚合物稳定性。

GDP-tubulin incorporation into growing microtubules modulates polymer stability.

机构信息

Institut National de la Santé et de la Recherche Médicale Unité 836, Institut des Neurosciences de Grenoble, Université Joseph Fourier, 38042 Grenoble, Cedex 9, France.

出版信息

J Biol Chem. 2010 Jun 4;285(23):17507-13. doi: 10.1074/jbc.M109.099515. Epub 2010 Apr 6.

Abstract

Microtubule growth proceeds through the endwise addition of nucleotide-bound tubulin dimers. The microtubule wall is composed of GDP-tubulin subunits, which are thought to come exclusively from the incorporation of GTP-tubulin complexes at microtubule ends followed by GTP hydrolysis within the polymer. The possibility of a direct GDP-tubulin incorporation into growing polymers is regarded as hardly compatible with recent structural data. Here, we have examined GTP-tubulin and GDP-tubulin incorporation into polymerizing microtubules using a minimal assembly system comprised of nucleotide-bound tubulin dimers, in the absence of free nucleotide. We find that GDP-tubulin complexes can efficiently co-polymerize with GTP-tubulin complexes during microtubule assembly. GDP-tubulin incorporation into microtubules occurs with similar efficiency during bulk microtubule assembly as during microtubule growth from seeds or centrosomes. Microtubules formed from GTP-tubulin/GDP-tubulin mixtures display altered microtubule dynamics, in particular a decreased shrinkage rate, apparently due to intrinsic modifications of the polymer disassembly properties. Thus, although microtubules polymerized from GTP-tubulin/GDP-tubulin mixtures or from homogeneous GTP-tubulin solutions are both composed of GDP-tubulin subunits, they have different dynamic properties, and this may reveal a novel form of microtubule "structural plasticity."

摘要

微管的生长是通过核苷酸结合的微管二聚体的末端添加进行的。微管壁由 GDP-微管亚基组成,这些亚基被认为仅来自微管末端 GTP-微管复合物的掺入,随后在聚合物内进行 GTP 水解。直接将 GDP-微管掺入生长聚合物的可能性被认为与最近的结构数据几乎不兼容。在这里,我们使用由核苷酸结合的微管二聚体组成的最小组装系统,在没有游离核苷酸的情况下,检查了 GTP-微管和 GDP-微管掺入聚合微管的情况。我们发现 GDP-微管复合物可以在微管组装过程中与 GTP-微管复合物有效地共聚。在批量微管组装过程中,GDP-微管掺入微管的效率与从种子或中心体生长的微管相似。由 GTP-微管/GDP-微管混合物形成的微管显示出改变的微管动力学特性,特别是收缩率降低,这显然是由于聚合物解聚特性的固有改变。因此,尽管由 GTP-微管/GDP-微管混合物或均相 GTP-微管溶液聚合而成的微管都由 GDP-微管亚基组成,但它们具有不同的动力学特性,这可能揭示了一种新形式的微管“结构可塑性”。

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