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首页> 外文期刊>Cytoskeleton >Amitosis requires gamma-tubulin-mediated microtubule assembly in Tetrahymena thermophila.
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Amitosis requires gamma-tubulin-mediated microtubule assembly in Tetrahymena thermophila.

机译:有丝分裂需要嗜热四膜虫中γ-微管蛋白介导的微管组装。

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摘要

To reveal the molecular systems involved in the division of a cell and its contents during cell proliferation is one of the major subjects in cell biology. Although cytoskeletal organization during mitosis has been well studied, consensus on the molecular basis of amitosis has not been achieved. Here we adapted an immunofluorescence method and investigated the cellular localization of gamma-tubulin and microtubules (MTs) in dividing Tetrahymena. Although the macronucleus (Mac) lacks a bipolar spindle, gamma-tubulin and MTs are specifically detected in the dividing Mac and show a marked change in the pattern of localization. First, gamma-tubulin and MTs appear in whole Mac, then, gamma-tubulin gathers at the center of the Mac where the aster-like structure of MTs forms. On Mac expansion, MTs associated with numerous dots of gamma-tubulin are reorganized into longitudinally arranged bundles, suggesting that the mutual sliding of each filament and polymerization of MTs may induce Mac expansion. Moreover, normal Mac expansion and equal segregation of the Mac are severely disturbed when gamma-tubulin is shut off. We propose that gamma-tubulin-mediated MT assembly is required in Mac amitosis of Tetrahymena.
机译:揭示细胞增殖过程中涉及细胞分裂及其内容的分子系统是细胞生物学的主要课题之一。尽管对有丝分裂期间的细胞骨架组织已进行了充分的研究,但在有丝分裂的分子基础上尚未达成共识。在这里,我们采用了免疫荧光方法,并研究了四膜虫的分裂过程中γ-微管蛋白和微管(MTs)的细胞定位。尽管大核(Mac)缺乏双极纺锤体,但在分裂的Mac中特异地检测到了γ-微管蛋白和MT,它们在定位模式上显示出明显的变化。首先,γ-微管蛋白和MTs出现在整个Mac中,然后,γ-微管蛋白聚集在Mac的中心,在那里形成MT的类似翠菊结构。在Mac扩张中,与多个γ-微管蛋白点相关的MT被重组为纵向排列的束,这表明每根细丝的相互滑动和MT的聚合可诱导Mac扩张。此外,当关闭γ-微管蛋白时,正常的Mac扩张和Mac的均等分离会受到严重干扰。我们建议在四膜虫的Mac无丝分裂中需要γ-微管蛋白介导的MT组装。

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