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首页> 外文期刊>Nature Genetics >Transcription factors mediate condensin recruitment and global chromosomal organization in fission yeast
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Transcription factors mediate condensin recruitment and global chromosomal organization in fission yeast

机译:转录因子介导裂殖酵母中的凝集素募集和整体染色体组织

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摘要

It is becoming clear that structural-maintenance-of-chromosomes (SMC) complexes such as condensin and cohesin are involved in three-dimensional genome organization, yet their exact roles in functional organization remain unclear. We used chromatin interaction analysis by paired-end tag sequencing (ChIA-PET) to comprehensively identify genome-wide associations mediated by condensin and cohesin in fission yeast. We found that although cohesin and condensin often bind;to the same loci, they direct different association networks and generate small and larger chromatin domains, respectively. Cohesin mediates associations between loci positioned within 100 kb of each other; condensin can drive longer-range associations. Moreover, condensin, but not cohesin, connects cell cycle-regulated genes bound by mitotic transcription factors. This study describes the different functions of condensin and cohesin in genome organization and how specific transcription factors function in condensin loading, cell cycle-dependent genome organization and mitotic chromosome organization to support faithful chromosome segregation.
机译:越来越明显的是,诸如缩合蛋白和粘着蛋白等染色体的结构维护(SMC)复合物参与了三维基因组组织,但是它们在功能组织中的确切作用仍不清楚。我们通过配对末端标记测序(ChIA-PET)使用染色质相互作用分析来全面鉴定裂变酵母中凝缩蛋白和粘着蛋白介导的全基因组关联。我们发现,尽管黏附素和凝缩素通常与同一基因座结合,但它们指导不同的缔合网络并分别产生较小和较大的染色质结构域。粘着蛋白介导位于彼此之间100 kb之内的基因座之间的关联;凝集素可以促进更广泛的关联。而且,凝集素而非黏附素连接由有丝分裂转录因子结合的细胞周期调控基因。这项研究描述了凝集素和粘着蛋白在基因组组织中的不同功能,以及特定的转录因子如何在凝缩蛋白加载,细胞周期依赖性基因组组织和有丝分裂染色体组织中发挥功能,以支持忠实的染色体分离。

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