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Chromosome positioning and the clustering of functionally related loci in yeast is driven by chromosomal interactions

机译:染色体定位和酵母中功能相关基因座的聚类是通过染色体相互作用驱动的

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In recent years there has been considerable and growing interest in the 3-dimensional organization of genomes. In this manuscript we present an integrated computational-molecular study that produces an ensemble of high-resolution 3-dimensional conformations of the budding yeast genome. The compaction, folding and spatial organization of the chromosomes was based on empirical data determined using proximity-based ligation. Our models incorporate external constraints that allow the separation of gross organizational effects from those due to local interactions. Our models show that yeast chromosomes have preferred yet non-exclusive positions. They also identify interaction dependent clustering of tRNAs, early firing origins of replication, and Gal4 protein binding sites, yet the cluster composition is dynamic. Our results support a link between structure and transcription that occurs within the context of a flexible genome organization.
机译:近年来,对三维基因组织的兴趣相当且越来越多。在该稿件中,我们介绍了一种综合计算分子研​​究,其产生了萌芽酵母基因组的高分辨率3维构象的集合。染色体的压实,折叠和空间组织基于使用基于近距离的连接确定的经验数据。我们的模型包含外部约束,允许将总组织效应的分离因本地互动而分离。我们的模型表明酵母染色体具有优选但非排他性的位置。它们还识别TRNA的相互作用依赖性聚类,早期烧制的复制起源和GAL4蛋白结合位点,但簇组成是动态的。我们的结果支持在灵活基因组组织的背景下发生的结构和转录之间的联系。

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