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倍性增加以及KAR3和SIR3功能破坏会改变减数分裂染色体和端粒的动态变化。

Increased ploidy and KAR3 and SIR3 disruption alter the dynamics of meiotic chromosomes and telomeres.

作者信息

Trelles-Sticken Edgar, Loidl Josef, Scherthan Harry

机构信息

Max-Planck-Institute for Molecular Genetics, Ihnestrasse 73, D-14195 Berlin, Germany.

出版信息

J Cell Sci. 2003 Jun 15;116(Pt 12):2431-42. doi: 10.1242/jcs.00453. Epub 2003 May 6.

Abstract

We investigated the sequence of chromosomal events during meiotic prophase in haploid, diploid and autotetraploid SK1 strains of Saccharomyces cerevisiae. Using molecular cytology, we found that meiosis-specific nuclear topology (i.e. dissolution of centromere clustering, bouquet formation and meiotic divisions) are significantly delayed in polyploid SK1 meiosis. Thus, and in contrast to the situation in plants, an increase in ploidy extends prophase I in budding yeast. Moreover, we found that bouquet formation also occurs in haploid and diploid SK1 meiosis deficient in the telomeric heterochromatin protein Sir3p. Diploid sir3Delta SK1 meiosis showed pleiotropic defects such as delayed centromere cluster resolution in a proportion of cells and impeded downstream events (i.e. bouquet formation, homologue pairing and meiotic divisions). Meiotic telomere clustering occurred in diploid and haploid sir3Delta strains. Using the haploid system, we further show that a bouquet forms at the kar3Delta SPB. Comparison of the expression of meiosis-specific Ndj1p-HA and Zip1p in haploid control and kar3Delta time courses revealed that fewer cells enter the meiotic cycle in absence of Kar3p. Elevated frequencies of bouquets in kar3Delta haploid meiosis suggest a role for Kar3p in regulation of telomere dynamics.

摘要

我们研究了酿酒酵母单倍体、二倍体和同源四倍体SK1菌株减数分裂前期的染色体事件序列。利用分子细胞学方法,我们发现多倍体SK1减数分裂中减数分裂特异性核拓扑结构(即着丝粒聚类的溶解、花束形成和减数分裂)显著延迟。因此,与植物的情况相反,倍性增加会延长芽殖酵母的前期I。此外,我们发现花束形成也发生在缺乏端粒异染色质蛋白Sir3p的单倍体和二倍体SK1减数分裂中。二倍体sir3ΔSK1减数分裂表现出多效性缺陷,如一部分细胞中着丝粒聚类分辨率延迟以及下游事件(即花束形成、同源配对和减数分裂)受阻。减数分裂端粒聚类发生在二倍体和单倍体sir3Δ菌株中。利用单倍体系统,我们进一步表明在kar3Δ纺锤体极体处形成了花束。对单倍体对照和kar3Δ时间进程中减数分裂特异性Ndj1p-HA和Zip1p表达的比较显示,在没有Kar3p的情况下进入减数分裂周期的细胞较少。kar3Δ单倍体减数分裂中花束频率升高表明Kar3p在端粒动态调控中起作用。

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