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首页> 外文期刊>Molecular biology of the cell >The V260I mutation in fission yeast alpha-tubulin Atb2 affects microtubule dynamics and EB1-Mal3 localization and activates the Bub1 branch of the spindle checkpoint
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The V260I mutation in fission yeast alpha-tubulin Atb2 affects microtubule dynamics and EB1-Mal3 localization and activates the Bub1 branch of the spindle checkpoint

机译:裂变酵母α-微管蛋白Atb2中的V260I突变影响微管动力学和EB1-Mal3定位并激活纺锤体检查站的Bub1分支

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摘要

We have identified a novel temperature-sensitive mutant of fission yeast alpha-tubulin Atb2 (atb2-983) that contains a single amino acid substitution (V2601). Atb2-983 is incorporated into the microtubules, and their overall structures are not altered noticeably, but microtubule dynamics is compromised during interphase. atb2-983 displays a high rate of chromosome missegregation and is synthetically lethal with deletions in a subset of spindle checkpoint genes including bub1, bub3, and mph1, but not with mad1, mad2, and mad3. During early mitosis in this mutant, Bub1, but not Mad2, remains for a prolonged period in the kinetochores that are situated in proximity to one of the two SPBs (spindle pole bodies). High dosage mal3(+), encoding EB1 homologue, rescues atb2-983, suggesting that Mal3 function is compromised. Consistently, Mal3 localization and binding between Mal3 and Atb2-983 are impaired significantly, and a mal3 single mutant, such as atb2-983, displays prolonged Bub1 kinetochore localization. Furthermore in atb2-983 back-and-forth centromere oscillation during prometaphase is abolished. Intriguingly, this oscillation still occurs in the mal3 mutant, indicating that there is another defect independent of Mal3. These results show that microtubule dynamics is important for coordinated execution of mitotic events, in which Mal3 plays a vital role.
机译:我们已经确定了裂变酵母α-微管蛋白Atb2(atb2-983)的新型温度敏感突变体,其中包含单个氨基酸取代(V2601)。 Atb2-983被并入到微管中,并且它们的整体结构没有明显改变,但是在相间过程中微管动力学受到损害。 atb2-983显示出很高的染色体错集率,并且在包括bub1,bub3和mph1的纺锤体检查点基因的子集中缺失时具有致命的合成危险,但对于mad1,mad2和mad3却没有。在此突变体的早期有丝分裂过程中,Bub1(而不是Mad2)在靠近两个SPB(主轴极体)之一的动植物中保留了较长时间。编码EB1同源物的高剂量mal3(+)拯救了atb2-983,表明Mal3功能受到损害。一致地,Mal3的定位以及Mal3和Atb2-983之间的结合会显着受损,并且mal3单个突变体(如atb2-983)显示出延长的Bub1线粒体定位。此外,在atb2-983前中期的来回着丝粒振荡被取消。有趣的是,这种振荡仍然发生在mal3突变体中,表明存在另一个独立于Mal3的缺陷。这些结果表明,微管动力学对于有丝分裂事件的协调执行非常重要,其中Mal3起着至关重要的作用。

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