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