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在秀丽隐杆线虫有丝分裂过程中,染色单体在没有中心体的情况下以依赖于Ran和CLASP的方式进行分离。

Chromatids segregate without centrosomes during Caenorhabditis elegans mitosis in a Ran- and CLASP-dependent manner.

作者信息

Nahaboo Wallis, Zouak Melissa, Askjaer Peter, Delattre Marie

机构信息

Laboratory of Molecular Biology of the Cell, University of Lyon 1, CNRS UMR5239, Ecole Normale Supérieure de Lyon, 69007 Lyon, France.

Andalusian Centre for Developmental Biology, CSIC-Junta de Andalucia, Universidad Pablo de Olavide, Carretera de Utrera, 41012 Seville, Spain.

出版信息

Mol Biol Cell. 2015 Jun 1;26(11):2020-9. doi: 10.1091/mbc.E14-12-1577. Epub 2015 Apr 1.

Abstract

During mitosis, chromosomes are connected to a microtubule-based spindle. Current models propose that displacement of the spindle poles and/or the activity of kinetochore microtubules generate mechanical forces that segregate sister chromatids. Using laser destruction of the centrosomes during Caenorhabditis elegans mitosis, we show that neither of these mechanisms is necessary to achieve proper chromatid segregation. Our results strongly suggest that an outward force generated by the spindle midzone, independently of centrosomes, is sufficient to segregate chromosomes in mitotic cells. Using mutant and RNAi analysis, we show that the microtubule-bundling protein SPD-1/MAP-65 and BMK-1/kinesin-5 act as a brake opposing the force generated by the spindle midzone. Conversely, we identify a novel role for two microtubule-growth and nucleation agents, Ran and CLASP, in the establishment of the centrosome-independent force during anaphase. Their involvement raises the interesting possibility that microtubule polymerization of midzone microtubules is continuously required to sustain chromosome segregation during mitosis.

摘要

在有丝分裂过程中,染色体与基于微管的纺锤体相连。目前的模型认为,纺锤体极的位移和/或动粒微管的活性产生了分离姐妹染色单体的机械力。通过在秀丽隐杆线虫有丝分裂期间用激光破坏中心体,我们发现这些机制都不是实现正确染色单体分离所必需的。我们的结果强烈表明,由纺锤体中区产生的向外力,独立于中心体,足以在有丝分裂细胞中分离染色体。通过突变体和RNA干扰分析,我们表明微管捆绑蛋白SPD-1/MAP-65和BMK-1/驱动蛋白-5起到了对抗纺锤体中区产生的力的制动作用。相反,我们确定了两种微管生长和成核因子Ran和CLASP在后期建立独立于中心体的力中的新作用。它们的参与提出了一个有趣的可能性,即有丝分裂期间持续需要中区微管的微管聚合来维持染色体分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cd4/4472013/123735cb2bab/2020fig1.jpg

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