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Non-random segregation of sister chromosomes in Escherichia coli

机译:大肠杆菌中姐妹染色体的非随机分离

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It has long been known that the 5' to 3' polarity of DNA synthesis results in both a leading and lagging strand at all replication forks. Until now, however, there has been no evidence that leading or lagging strands are spatially organized in any way within a cell. Here we show that chromosome segregation in Escherichia coli is not random but is driven in a manner that results in the leading and lagging strands being addressed to particular cellular destinations. These destinations are consistent with the known patterns of chromosome segregation. Our work demonstrates a new level of organization relating to the replication and segregation of the E. coli chromosome.
机译:众所周知,DNA合成的5'至3'极性会在所有复制叉处同时产生前导链和滞后链。但是,到目前为止,还没有证据表明前导链或滞后链在细胞内以任何方式在空间上组织起来。在这里,我们显示大肠杆菌中的染色体分离不是随机的,而是以导致前导链和滞后链被寻址到特定细胞目的地的方式驱动的。这些目的地与已知的染色体分离模式一致。我们的工作证明了与大肠杆菌染色体的复制和分离有关的组织的新水平。

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