首页> 外文OA文献 >Bipolar spindle attachments affect redistributions of ZW10, a Drosophila centromere/kinetochore component required for accurate chromosome segregation
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Bipolar spindle attachments affect redistributions of ZW10, a Drosophila centromere/kinetochore component required for accurate chromosome segregation

机译:双极纺锤体附着会影响ZW10的重新分布,ZW10是果蝇着丝粒/线粒体组件,需要进行精确的染色体分离。

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摘要

Previous efforts have shown that mutations in the Drosophila zw10 gene cause massive chromosome missegregation during mitotic divisions in several tissues. Here we demonstrate that mutations in zw10 also disrupt chromosome behavior in male meiosis I and meiosis II, indicating that ZW10 function is common to both equational and reductional divisions. Divisions are apparently normal before anaphase onset, but ZW10 mutants exhibit lagging chromosomes and irregular chromosome segregation at anaphase, Chromosome missegregation during meiosis I of these mutants is not caused by precocious separation of sister chromatids, but rather the nondisjunction of homologs. ZW10 is first visible during prometaphase, where it localizes to the kinetochores of the bivalent chromosomes (during meiosis I) or to the sister kinetochores of dyads (during meiosis II). During metaphase of both divisions, ZW10 appears to move from the kinetochores and to spread toward the poles along what appear to be kinetochore microtubules. Redistributions of ZW10 at metaphase require bipolar attachments of individual chromosomes or paired bivalents to the spindle. At the onset of anaphase I or anaphase II, ZW10 rapidly relocalizes to the kinetochore regions of the separating chromosomes, In other mutant backgrounds in which chromosomes lag during anaphase, the presence or absence of ZW10 at a particular kinetochore predicts whether or not the chromosome moves appropriately to the spindle poles. We propose that ZW10 acts as part of, or immediately downstream of, a tension-sensing mechanism that regulates chromosome separation or movement at anaphase onset.
机译:先前的研究表明,果蝇zw10基因中的突变会导致几种组织的有丝分裂过程中大量染色体错聚。在这里,我们证明zw10中的突变也会破坏雄性减数分裂I和减数分裂II中的染色体行为,这表明ZW10的功能对于等式和归类划分都是通用的。分裂在后期开始之前显然是正常的,但是ZW10突变体在后期显示滞后的染色体和不规则的染色体分离,这些突变体I在减数分裂I期间染色体的失聚不是由姐妹染色单体的过早分离引起的,而是同系物的非分离。 ZW10在前中期首先可见,在那里定位于二价染色体的动植物(在减数分裂I期间)或双胞胎的姊妹动植物(在减数分裂II期间)。在两个分裂的中期,ZW10似乎都从动粒体移开,并沿着动粒微管向两极扩散。 ZW10在中期的重新分布需要单个染色体的双极附件或成对的二价主轴。在后期I或后期II开始时,ZW10迅速重新定位到分离染色体的线粒体区域。在后期阶段染色体滞后的其他突变背景中,特定线粒体ZW10的存在与否预示着染色体是否移动适当地连接到主轴极。我们建议Z​​W10作为张力感应机制的一部分或在其下游,在后期发病时调节染色体分离或运动。

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