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Modelling of crowded polymers elucidate effects of double-strand breaks in topological domains of bacterial chromosomes

机译:拥挤聚合物的建模阐明了细菌染色体拓扑结构域中双链断裂的作用

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摘要

Using numerical simulations of pairs of long polymeric chains confined in microscopic cylinders, we investigate consequences of double-strand DNA breaks occurring in independent topological domains, such as these constituting bacterial chromosomes. Our simulations show a transition between segregated and mixed state upon linearization of one of the modelled topological domains. Our results explain how chromosomal organization into topological domains can fulfil two opposite conditions: (i) effectively repulse various loops from each other thus promoting chromosome separation and (ii) permit local DNA intermingling when one or more loops are broken and need to be repaired in a process that requires homology search between broken ends and their homologous sequences in closely positioned sister chromatid.
机译:使用限制在微观圆柱体中的长聚合链对的数值模拟,我们研究了在独立的拓扑结构域(例如构成细菌染色体的结构域)中发生的双链DNA断裂的后果。我们的仿真显示,在对一个建模的拓扑域进行线性化后,隔离状态和混合状态之间会发生过渡。我们的结果解释了如何将染色体组织到拓扑结构域中来满足两个相反的条件:(i)有效地相互排斥各种环,从而促进染色体分离;(ii)当一个或多个环被破坏并需要修复时允许局部DNA混合。一个过程,要求在紧密定位的姐妹染色单体的折断末端及其同源序列之间进行同源搜索。

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