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锥虫中新型细胞周期检查点的证据:无丝分裂情况下动基体分离和胞质分裂。

Evidence for novel cell cycle checkpoints in trypanosomes: kinetoplast segregation and cytokinesis in the absence of mitosis.

作者信息

Ploubidou A, Robinson D R, Docherty R C, Ogbadoyi E O, Gull K

机构信息

University of Manchester, School of Biological Sciences, Stopford Building 2.205, Oxford Road, Manchester, M13 9PT, UK.

出版信息

J Cell Sci. 1999 Dec;112 ( Pt 24):4641-50. doi: 10.1242/jcs.112.24.4641.

Abstract

Trypanosoma brucei has a single nucleus and a single kinetoplast (the mitochondrial genome). Each of these organelles has a distinct S phase, which is followed by a segregation period, prior to cell division. The segregation of the two genomes takes place in a specific temporal order by interaction with microtubule-based structures, the spindle for nuclear DNA and the flagellum basal bodies for the kinetoplast DNA. We used rhizoxin, the anti-microtubule agent and polymerisation inhibitor, or the nuclear DNA synthesis inhibitor aphidicolin, to interfere with cell cycle events in order to study how such events are co-ordinated. We show that T. brucei cytokinesis is not dependent upon either mitosis or nuclear DNA synthesis, suggesting that there are novel cell cycle checkpoints in this organism. Moreover, use of monoclonal antibodies to reveal cytoplasmic events such as basal body duplication shows that some aphidicolin treated cells appear to be in G(1) phase (1K1N) but have activated some cytoplasmic events characteristic of G(2) phase (basal body segregation). We discuss a possible dominant role in trypanosomes for kinetoplast/basal body segregation in control of later cell cycle events such as cytokinesis

摘要

布氏锥虫有一个细胞核和一个动质体(线粒体基因组)。这些细胞器中的每一个都有一个独特的S期,随后是一个分离期,然后才进行细胞分裂。两个基因组的分离通过与基于微管的结构相互作用以特定的时间顺序发生,核DNA的纺锤体和动质体DNA的鞭毛基体。我们使用抗微管剂和聚合抑制剂根霉素或核DNA合成抑制剂阿非迪霉素来干扰细胞周期事件,以研究这些事件是如何协调的。我们表明,布氏锥虫的胞质分裂不依赖于有丝分裂或核DNA合成,这表明该生物体中存在新的细胞周期检查点。此外,使用单克隆抗体来揭示诸如基体复制等细胞质事件表明,一些经阿非迪霉素处理的细胞似乎处于G(1)期(1K1N),但已经激活了一些G(2)期特有的细胞质事件(基体分离)。我们讨论了动质体/基体分离在锥虫中对后期细胞周期事件如胞质分裂的控制中可能起的主导作用。

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