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首页> 外文期刊>PLoS Genetics >Asymmetry of Chromosome Replichores Renders the DNA Translocase Activity of FtsK Essential for Cell Division and Cell Shape Maintenance in Escherichia coli
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Asymmetry of Chromosome Replichores Renders the DNA Translocase Activity of FtsK Essential for Cell Division and Cell Shape Maintenance in Escherichia coli

机译:染色体复制体的不对称性导致FtsK的DNA转运酶活性对于大肠杆菌中的细胞分裂和细胞形状维持至关重要

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Bacterial chromosomes are organised as two replichores of opposite polarity that coincide with the replication arms from the ori to the ter region. Here, we investigated the effects of asymmetry in replichore organisation in Escherichia coli. We show that large chromosome inversions from the terminal junction of the replichores disturb the ongoing post-replicative events, resulting in inhibition of both cell division and cell elongation. This is accompanied by alterations of the segregation pattern of loci located at the inversion endpoints, particularly of the new replichore junction. None of these defects is suppressed by restoration of termination of replication opposite oriC, indicating that they are more likely due to the asymmetry of replichore polarity than to asymmetric replication. Strikingly, DNA translocation by FtsK, which processes the terminal junction of the replichores during cell division, becomes essential in inversion-carrying strains. Inactivation of the FtsK translocation activity leads to aberrant cell morphology, strongly suggesting that it controls membrane synthesis at the division septum. Our results reveal that FtsK mediates a reciprocal control between processing of the replichore polarity junction and cell division.
机译:细菌染色体被组织为两个极性相反的复制体,与从ori到ter区域的复制臂重合。在这里,我们调查了不对称性对大肠杆菌中复制体组织的影响。我们表明,从复制品的末端连接处的大染色体倒置干扰正在进行的复制后事件,从而导致细胞分裂和细胞伸长的抑制。这伴随着位于反转末端的基因座的分离模式的改变,尤其是新的复制交界处。通过与oriC相对的复制终止的恢复,这些缺陷均无法得到抑制,这表明与复制对称性相比,由于复制子极性的不对称性,它们更有可能被复制。引人注目的是,通过FtsK进行的DNA易位,在细胞分裂过程中处理了复制子的末端连接,在携带反型的菌株中变得至关重要。 FtsK易位活性的失活导致异常的细胞形态,强烈暗示它控制分裂间隔处的膜合成。我们的结果表明,FtsK介导了复制极极性连接的处理和细胞分裂之间的相互控制。

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