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首页> 外文期刊>Chromosoma >Meiotic cohesin-based chromosome structure is essential for homologous chromosome pairing in Schizosaccharomyces pombe
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Meiotic cohesin-based chromosome structure is essential for homologous chromosome pairing in Schizosaccharomyces pombe

机译:基于减数分裂凝聚素的染色体结构对于粟酒裂殖酵母的同源染色体配对至关重要

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摘要

Chromosome structure is dramatically altered upon entering meiosis to establish chromosomal architectures necessary for the successful progression of meiosis-specific events. An early meiotic event involves the replacement of the non-SMC mitotic cohesins with their meiotic equivalents in most part of the chromosome, forming an axis on meiotic chromosomes. We previously demonstrated that the meiotic cohesin complex is required for chromosome compaction during meiotic prophase in the fission yeast Schizosaccharomyces pombe. These studies revealed that chromosomes are elongated in the absence of the meiotic cohesin subunit Rec8 and shortened in the absence of the cohesin-associated protein Pds5. In this study, using super-resolution structured illumination microscopy, we found that Rec8 forms a linear axis on chromosomes, which is required for the organized axial structure of chromatin during meiotic prophase. In the absence of Pds5, the Rec8 axis is shortened whereas chromosomes are widened. In rec8 or pds5 mutants, the frequency of homologous chromosome pairing is reduced. Thus, Rec8 and Pds5 play an essential role in building a platform to support the chromosome architecture necessary for the spatial alignment of homologous chromosomes.
机译:进入减数分裂后,染色体结构会发生巨大变化,以建立成功减数分裂特定事件发展所必需的染色体结构。早期减数分裂事件涉及在大部分染色体上用非减数分裂等效物替换非SMC有丝分裂粘附素,从而在减数分裂染色体上形成轴。先前我们证明了减数分裂黏附素复合物是裂变酵母粟酒裂殖酵母减数分裂前期染色体紧实所必需的。这些研究表明,染色体在不存在减数分裂黏附素亚基Rec8的情况下会延长,而在黏附素相关蛋白Pds5的情况下会缩短。在这项研究中,使用超分辨率结构照明显微镜,我们发现Rec8在染色体上形成线性轴,这是减数分裂前期染色质的有组织轴向结构所必需的。在没有Pds5的情况下,Rec8轴缩短,而染色体变宽。在rec8或pds5突变体中,同源染色体配对的频率降低。因此,Rec8和Pds5在构建平台以支持同源染色体空间比对所需的染色体体系结构中起着至关重要的作用。

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