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Kinetochore-mediated outward force promotes spindle pole separation in fission yeast

机译:Kinetochore介导的向外力促进裂变酵母中的主轴杆分离

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摘要

Bipolar spindles are organized by motor proteins that generate microtubule-dependent forces to separate the two spindle poles. The fission yeast Cut7 (kinesin-5) is a plus-end-directed motor that generates the outward force to separate the two spindle poles, whereas the minus-end-directed motor Pkl1 (kinesin-14) generates the inward force. Balanced forces by these antagonizing kinesins are essential for bipolar spindle organization in mitosis. Here, we demonstrate that chromosomes generate another outward force that contributes to the bipolar spindle assembly. First, it was noted that the cut7 pkl1 double knockout failed to separate spindle poles in meiosis I, although the mutant is known to succeed it in mitosis. It was assumed that this might be because meiotic kinetochores of bivalent chromosomes joined by cross-overs generate weaker tensions in meiosis I than the strong tensions in mitosis generated by tightly tethered sister kinetochores. In line with this idea, when meiotic mono-oriented kinetochores were artificially converted to a mitotic bioriented layout, the cut7 pkl1 mutant successfully separated spindle poles in meiosis I. Therefore, we propose that spindle pole separation is promoted by outward forces transmitted from kinetochores to spindle poles through microtubules.
机译:双极纺锤体由电动机蛋白组织,产生微管依赖性力以分离两个主轴杆。裂变酵母切口7(kinesin-5)是一种正端导向的电动机,其产生分离两个主轴磁极的向外力,而减去终端导向的电动机PKL1(Kinesin-14)产生向内的力。这些拮抗的Kinesins的均衡力对于有丝分裂的双极主轴组织至关重要。在这里,我们证明染色体产生了有助于双极主轴组件的另一个向外力。首先,有人指出,Cut7 PKL1双敲除未能在减数分裂I中分离主轴杆I,尽管已知突变体在有丝分裂中取得成功。假设这可能是因为通过交叉引起的二价染色体的减数分裂染色体在减数分裂中产生较弱的张力,而不是由紧密束缚的妹妹Kinetochores产生的有丝分裂中的强烈张力。符合这个想法,当人工中的单体化的Kinetochores人工转化为有丝分裂的布局时,切割体在减数分裂中成功地分离了梭杆杆。因此,我们提出了由kinetochores传播的向外力促进主轴杆分离穿过微管的主轴磁极。

著录项

  • 来源
    《Molecular biology of the cell》 |2019年第22期|共12页
  • 作者单位

    Waseda Univ TWIns Lab Cytoskeletal Logist Dept Life Sci &

    Med Biosci Shinjuku Ku 2-2 Wakamatsucho Tokyo 1628480 Japan;

    Waseda Univ TWIns Lab Cytoskeletal Logist Dept Life Sci &

    Med Biosci Shinjuku Ku 2-2 Wakamatsucho Tokyo 1628480 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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