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一种新的裂殖酵母基因kms1 +是减数分裂前期特异性核结构形成所必需的。

A novel fission yeast gene, kms1+, is required for the formation of meiotic prophase-specific nuclear architecture.

作者信息

Shimanuki M, Miki F, Ding D Q, Chikashige Y, Hiraoka Y, Horio T, Niwa O

机构信息

Kazusa DNA Research Institute, Kisarazu, Chiba, Japan.

出版信息

Mol Gen Genet. 1997 Apr 16;254(3):238-49. doi: 10.1007/s004380050412.

Abstract

In the meiotic prophase nucleus of the fission yeast Schizosaccharomyces pombe, chromosomes are arranged in an oriented manner: telomeres cluster in close proximity to the spindle pole body (SPB), while centromeres form another cluster at some distance from the SPB. We have isolated a mutant, kms1, in which the structure of the meiotic prophase nucleus appears to be distorted. Using specific probes to localize the SPB and telomeres, multiple signals were observed in the mutant nuclei, in contrast to the case in wild-type. Genetic analysis showed that in the mutant, meiotic recombination frequency was reduced to about one-quarter of the wild-type level and meiotic segregation was impaired. This phenotype strongly suggests that the telomere-led rearrangement of chromosomal distribution that normally occurs in the fission yeast meiotic nucleus is an important prerequisite for the efficient pairing of homologous chromosomes. The kms1 mutant was also impaired in karyogamy, suggesting that the kms1+ gene is involved in SPB function. However, the kms1+ gene is dispensable for mitotic growth. The predicted amino acid sequence of the gene product shows no significant similarity to known proteins.

摘要

在裂殖酵母粟酒裂殖酵母的减数分裂前期细胞核中,染色体以一种定向方式排列:端粒紧密聚集在纺锤体极体(SPB)附近,而着丝粒在距SPB一定距离处形成另一个簇。我们分离出了一个突变体kms1,其中减数分裂前期细胞核的结构似乎发生了扭曲。使用特异性探针定位SPB和端粒,与野生型情况相反,在突变体细胞核中观察到了多个信号。遗传分析表明,在突变体中,减数分裂重组频率降至野生型水平的约四分之一,减数分裂分离也受到损害。这种表型强烈表明,通常在裂殖酵母减数分裂细胞核中发生的由端粒引导的染色体分布重排是同源染色体有效配对的重要前提。kms1突变体在核融合方面也存在缺陷,这表明kms1 +基因参与SPB功能。然而,kms1 +基因对于有丝分裂生长是可有可无的。该基因产物的预测氨基酸序列与已知蛋白质没有显著相似性。

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