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Involvement of condensin-directed gene associations in the organization and regulation of chromosome territories during the cell cycle

机译:凝集素指导基因协会参与细胞周期中染色体区域的组织和调控

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Chromosomes are not randomly disposed in the nucleus but instead occupy discrete sub-nuclear domains, referred to as chromosome territories. The molecular mechanisms that underlie the formation of chromosome territories and how they are regulated during the cell cycle remain largely unknown. Here, we have developed two different chromosome-painting approaches to address how chromosome territories are organized in the fission yeast model organism. We show that condensin frequently associates RNA polymerase III-transcribed genes (tRNA and 5S rRNA) that are present on the same chromosomes, and that the disruption of these associations by condensin mutations significantly compromises the chromosome territory arrangement. We also find that condensin-dependent intra-chromosomal gene associations and chromosome territories are co-regulated during the cell cycle. For example, condensin-directed gene associations occur to the least degree during S phase, with the chromosomal overlap becoming largest. In clear contrast, condensin-directed gene associations become tighter in other cell-cycle phases, especially during mitosis, with the overlap between the different chromosomes being smaller. This study suggests that condensin-driven intra-chromosomal gene associations contribute to the organization and regulation of chromosome territories during the cell cycle.
机译:染色体不是随机分布在细胞核中,而是占据离散的亚核域,称为染色体区域。染色体疆域形成的分子机制及其在细胞周期中如何调控的机制尚不清楚。在这里,我们开发了两种不同的染色体绘制方法来解决裂变酵母模型生物体中染色体区域的组织方式。我们显示凝缩蛋白经常关联存在于同一条染色体上的RNA聚合酶III转录的基因(tRNA和5S rRNA),并且凝缩蛋白突变对这些关联的破坏显着损害了染色体的区域排列。我们还发现,凝集素依赖性染色体内基因关联和染色体区域在细胞周期中受到共同调节。例如,在S期,凝集素指导的基因缔合发生的程度最小,染色体重叠最大。与之形成鲜明对比的是,在其他细胞周期阶段,尤其是在有丝分裂期间,凝集素指导的基因缔合变得更紧密,不同染色体之间的重叠更小。这项研究表明,凝集素驱动的染色体内基因关联在细胞周期中有助于染色体区域的组织和调节。

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