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减数分裂中的细胞核重组:裂殖酵母粟酒裂殖酵母着丝粒和端粒位置的转换

Meiotic nuclear reorganization: switching the position of centromeres and telomeres in the fission yeast Schizosaccharomyces pombe.

作者信息

Chikashige Y, Ding D Q, Imai Y, Yamamoto M, Haraguchi T, Hiraoka Y

机构信息

Kansai Advanced Research Center, Communications Research Laboratory, Kobe, Japan.

出版信息

EMBO J. 1997 Jan 2;16(1):193-202. doi: 10.1093/emboj/16.1.193.

Abstract

In fission yeast meiotic prophase, telomeres are clustered near the spindle pole body (SPB; a centrosome-equivalent structure in fungi) and take the leading position in chromosome movement, while centromeres are separated from the SPB. This telomere position contrasts with mitotic nuclear organization, in which centromeres remain clustered near the SPB and lead chromosome movement. Thus, nuclear reorganization switching the position of centromeres and telomeres must take place upon entering meiosis. In this report, we analyze the nuclear location of centromeres and telomeres in genetically well-characterized meiotic mutant strains. An intermediate structure for telomere-centromere switching was observed in haploid cells induced to undergo meiosis by synthetic mating pheromone; fluorescence in situ hybridization revealed that in these cells, both telomeres and centromeres were clustered near the SPB. Further analyses in a series of mutants showed that telomere-centromere switching takes place in two steps; first, association of telomeres with the SPB and, second, dissociation of centromeres from the SPB. The first step can take place in the haploid state in response to mating pheromone, but the second step does not take place in haploid cells and probably depends on conjugation-related events. In addition, a linear minichromosome was also co-localized with authentic telomeres instead of centromeres, suggesting that telomere clustering plays a role in organizing chromosomes within a meiotic prophase nucleus.

摘要

在裂殖酵母减数分裂前期,端粒聚集在纺锤体极体(SPB;真菌中与中心体等效的结构)附近,并在染色体移动中占据主导地位,而着丝粒则与SPB分离。这种端粒位置与有丝分裂核组织形成对比,在有丝分裂核组织中,着丝粒仍聚集在SPB附近并引领染色体移动。因此,进入减数分裂时必须发生着丝粒和端粒位置互换的核重组。在本报告中,我们分析了遗传特征明确的减数分裂突变菌株中着丝粒和端粒的核定位。在用合成交配信息素诱导进行减数分裂的单倍体细胞中观察到了端粒 - 着丝粒互换的中间结构;荧光原位杂交显示,在这些细胞中,端粒和着丝粒都聚集在SPB附近。对一系列突变体的进一步分析表明,端粒 - 着丝粒互换分两步进行;第一步,端粒与SPB结合,第二步,着丝粒与SPB解离。第一步可以在单倍体状态下响应交配信息素发生,但第二步不会在单倍体细胞中发生,可能取决于与接合相关的事件。此外,一个线性小染色体也与真实端粒而非着丝粒共定位,这表明端粒聚集在减数分裂前期核内染色体组织中发挥作用。

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