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Hydrolysis of GTP associated with the formation of tubulin oligomers is involved in microtubule nucleation.

机译:与微管蛋白低聚物形成相关的GTP的水解涉及微管成核。

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摘要

Hydrolysis of GTP is known to accompany microtubule assembly. Here we show that hydrolysis of GTP is also associated with the formation of linear oligomers of tubulin, which are precursors (prenuclei) in microtubule assembly. The hydrolysis of GTP on these linear oligomers inhibits the lateral association of GTP-tubulin that leads to the formation of a bidimensional lattice. Therefore GTP hydrolysis interferes with the nucleation of microtubules. Linear oligomers are also formed in mixtures of GTP-tubulin and GDP-tubulin. The hydrolysis of GTP associated with heterologous interactions between GTP-tubulin and GDP-tubulin in the cooligomer takes place at a threefold faster rate than upon homologous interactions between GTP-tubulins. The implication of these results in a model of vectorial GTP hydrolysis in microtubule assembly is discussed.
机译:已知GTP的水解伴随微管组装。在这里,我们显示GTP的水解还与微管蛋白的线性低聚物的形成有关,微管蛋白是微管装配中的前体(前核)。这些线性低聚物上GTP的水解抑制了GTP-微管蛋白的横向缔合,从而导致二维晶格的形成。因此,GTP水解会干扰微管的成核。线性低聚物也以GTP-微管蛋白和GDP-微管蛋白的混合物形式形成。与在冷聚聚体中GTP-微管蛋白和GDP-微管蛋白之间的异源相互作用相关的GTP水解发生的速度比在GTP-微管蛋白之间的同源相互作用时快三倍。讨论了这些结果对微管组装中矢量GTP水解模型的影响。

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