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Chromosomes Rein Back the Spindle Pole Body during Horsetail Movement in Fission Yeast Meiosis

机译:在裂变酵母减数分裂的马尾运动过程中,染色体控制着纺锤体

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References(22) Cited-By(2) Supplementary materials(4) In meiosis, pairing and recombination of homologous chromosomes are crucial for the correct segregation of chromosomes, and substantial movements of chromosomes are required to achieve homolog pairing. During this process, it is known that telomeres cluster to form a bouquet arrangement of chromosomes. The fission yeast Schizosaccharomyces pombe provides a striking example of bouquet formation, after which the entire nucleus oscillates between the cell poles (these oscillations are generally called horsetail nuclear movements) while the telomeres remain clustered to the spindle pole body (SPB; a centrosome-equivalent structure in fungi) at the leading edge of the moving nucleus. S. pombe mutants defective in telomere clustering frequently form aberrant spindles, such as monopolar or nonpolar spindles, leading to missegregation of the chromosomes at the subsequent meiotic divisions. Here we demonstrate that such defects in meiotic spindle formation caused by loss of meiotic telomere clustering are rescued when nuclear movement is prevented. On the other hand, stopping nuclear movement does not rescue defects in telomere clustering, nor chromosome missgregation even in cells that have formed a bipolar spindle. These results suggest that movement of the SPB without attachment of telomeres leads to the formation of aberrant spindles, but that recovering bipolar spindles is not sufficient for rescue of chromosome missegregation in mutants lacking telomere clustering.
机译:参考文献(22)被引用的辅助材料(2)补充材料(4)在减数分裂中,同源染色体的配对和重组对于染色体的正确分离至关重要,而实现同源配对需要染色体的大量移动。在此过程中,已知端粒聚集形成染色体的花束排列。裂变酵母粟酒裂殖酵母(Schizosaccharomyces pombe)提供了一个惊人的花束形成例子,此后整个核在细胞极之间振荡(这些振荡通常称为马尾核运动),而端粒则聚集在纺锤极体上(SPB;等价的中心体)真菌的结构)位于运动核的前缘。在端粒簇中有缺陷的粟酒裂殖酵母突变体经常形成异常的纺锤体,例如单极或非极性纺锤体,从而导致染色体在随后的减数分裂分裂中错聚。在这里,我们证明了当防止核运动时,可以挽救由减数分裂端粒簇丢失引起的减数分裂纺锤体形成中的此类缺陷。另一方面,即使在已经形成双极纺锤体的细胞中,停止核运动也不能挽救端粒簇的缺陷,也不能挽救染色体的错误聚集。这些结果表明没有端粒附着的SPB的运动会导致异常纺锤体的形成,但恢复双极纺锤体不足以挽救缺少端粒簇的突变体中的染色体错聚。

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