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酵母动粒蛋白Slk19是防止减数分裂和有丝分裂中染色体异常分离所必需的。

The yeast kinetochore protein Slk19 is required to prevent aberrant chromosome segregation in meiosis and mitosis.

作者信息

Pfiz Stefan, Zimmermann Johann, Hilt Wolfgang

机构信息

Institut für Biochemie, Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart, Germany.

出版信息

Genes Cells. 2002 Oct;7(10):1033-42. doi: 10.1046/j.1365-2443.2002.00583.x.

Abstract

BACKGROUND

Slk19 is a coiled-coil protein, which locates to the kinetochores of S. cerevisiae. Most cells lacking Slk19 undergo incomplete meiosis and form dyads during sporulation. Endogenous chromosomes appeared to be predominantly divided in an equational manner during single-division meiosis of slk19 null mutants.

RESULTS

We have monitored the segregation of artificial chromosomes (YACs) in slk19 null mutants during both single-division meiosis and complete meiosis. In contrast to the results obtained with endogenous chromosomes, YACs only rarely undergo equational segregation during single division meiosis, although high rates of aberrant segregation were detected. This accounts for the high frequency of lethal spores among dyads of slk19 delta null mutants. The fraction of slk19 delta cells that were able to form tetrads solely exhibited YAC segregation defects in meiosis II, whereas the segregation of YACs in meiosis I was normal in these cells. This result might indicate that correct chromosome division in meiosis I is a prerequisite for tetrad formation. slk19 null mutants also showed YAC instability in mitosis and reduced survival after the induction of mitotic spindle damage.

CONCLUSION

Slk19 is required to avoid aberrant segregation of chromosomes in meiosis I and II and in mitosis. We suggest that the absence of Slk19 leads to uncoupling of chromosome movement from completion of microtubule attachment and resolution of chromosome cohesion.

摘要

背景

Slk19是一种卷曲螺旋蛋白,定位于酿酒酵母的动粒。大多数缺乏Slk19的细胞在孢子形成过程中经历不完全减数分裂并形成二分体。在slk19缺失突变体的单分裂减数分裂过程中,内源染色体似乎主要以均等方式分离。

结果

我们监测了slk19缺失突变体在单分裂减数分裂和完整减数分裂过程中人工染色体(YACs)的分离情况。与内源染色体的结果相反,YACs在单分裂减数分裂过程中很少发生均等分离,尽管检测到高频率的异常分离。这解释了slk19缺失突变体二分体中致死孢子的高频率。能够形成四分体的slk19缺失细胞部分仅在减数分裂II中表现出YAC分离缺陷,而这些细胞中YACs在减数分裂I中的分离是正常的。这一结果可能表明减数分裂I中正确的染色体分裂是形成四分体的先决条件。slk19缺失突变体在有丝分裂中也表现出YAC不稳定性,并且在诱导有丝分裂纺锤体损伤后存活率降低。

结论

Slk19是避免减数分裂I和II以及有丝分裂中染色体异常分离所必需的。我们认为Slk19的缺失导致染色体运动与微管附着完成和染色体凝聚解离解偶联。

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