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首页> 外文期刊>Molecular biology of the cell >Choice between 1-and 2-furrow cytokinesis in Caenorhabditis elegans embryos with tripolar spindles
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Choice between 1-and 2-furrow cytokinesis in Caenorhabditis elegans embryos with tripolar spindles

机译:用大车锭剂的Caenorhabditis egryos ineforms的1-2-呋喃儿细胞因子的选择

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摘要

Excessive centrosomes often lead to multipolar spindles, and thus probably to multipolar mitosis and aneuploidy. In Caenorhabditis elegans, similar to 70% of the paternal emb-27(APC6) mutant embryonic cells contained more than two centrosomes and formed multipolar spindles. However, only similar to 30% of the cells with tripolar spindles formed two cytokinetic furrows. The rest formed one furrow, similar to normal cells. To investigate the mechanism via which cells avoid forming two cytokinetic furrows even with a tripolar spindle, we conducted live-cell imaging in emb-27(APC6) mutant cells. We observed that the chromatids were aligned on only two of the three sides of the tripolar spindle, and the angle of the tripolar spindle relative to the long axis of the cell correlated with the number of cytokinetic furrows. Our numerical modeling showed that the combination of cell shape, cortical pulling forces, and heterogeneity of centrosome size determines whether cells with a tripolar spindle form one or two cytokinetic furrows.
机译:过度的中心常将导致多极纺锤,因此可能对多极化物和非倍性。在皮卡洛巴略杆菌中,类似于70%的父母胚胎27(APC6)突变体胚胎细胞,其含有多个以上的CentroSomes和形成的多极锭子。然而,只有30%的含有黎达纺锤体的30%形成了两种细胞因子沟。其余的形成一个沟槽,类似于正常细胞。为了研究即使用三鼠主轴避免细胞避免形成两种细胞因速沟的机制,我们在胚胎27(APC6)突变细胞中进行了活细胞成像。我们观察到染色体在三角石主轴的三个侧面中的两个上对齐,并且三角轴相对于细胞长轴的角度与细胞沟的数量相关联。我们的数值模拟表明,细胞形状,皮质拉动力和中心体大小的异质性的组合决定了带有黎罗尔纺织的细胞是否形成一个或两个细胞内沟。

著录项

  • 来源
    《Molecular biology of the cell 》 |2019年第16期| 共11页
  • 作者

    Kondo Tomo; Kimura Akatsuki;

  • 作者单位

    Grad Univ Adv Studies Sokendai Cell Architecture Lab Dept Chromosome Sci Sch Life Sci Natl Inst Genet Yata 1111 Mishima Shizuoka 4118540 Japan;

    Grad Univ Adv Studies Sokendai Cell Architecture Lab Dept Chromosome Sci Sch Life Sci Natl Inst Genet Yata 1111 Mishima Shizuoka 4118540 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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