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在缺乏RecBCD DNA修复酶的大肠杆菌染色体末端区域中,分裂诱导的DNA双链断裂

Division-induced DNA double strand breaks in the chromosome terminus region of Escherichia coli lacking RecBCD DNA repair enzyme.

作者信息

Sinha Anurag Kumar, Durand Adeline, Desfontaines Jean-Michel, Iurchenko Ielyzaveta, Auger Hélène, Leach David R F, Barre François-Xavier, Michel Bénédicte

机构信息

Bacterial DNA stability, Genome biology department, Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Université Paris-Sud, Université Paris-Saclay, Gif-sur-Yvette, France.

Evolution and maintenance of circular chromosomes, Genome biology department, Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Université Paris-Sud, Université Paris-Saclay, Gif-sur-Yvette, France.

出版信息

PLoS Genet. 2017 Oct 2;13(10):e1006895. doi: 10.1371/journal.pgen.1006895. eCollection 2017 Oct.

Abstract

Marker frequency analysis of the Escherichia coli recB mutant chromosome has revealed a deficit of DNA in a specific zone of the terminus, centred on the dif/TerC region. Using fluorescence microscopy of a marked chromosomal site, we show that the dif region is lost after replication completion, at the time of cell division, in one daughter cell only, and that the phenomenon is transmitted to progeny. Analysis by marker frequency and microscopy shows that the position of DNA loss is not defined by the replication fork merging point since it still occurs in the dif/TerC region when the replication fork trap is displaced in strains harbouring ectopic Ter sites. Terminus DNA loss in the recB mutant is also independent of dimer resolution by XerCD at dif and of Topo IV action close to dif. It occurs in the terminus region, at the point of inversion of the GC skew, which is also the point of convergence of specific sequence motifs like KOPS and Chi sites, regardless of whether the convergence of GC skew is at dif (wild-type) or a newly created sequence. In the absence of FtsK-driven DNA translocation, terminus DNA loss is less precisely targeted to the KOPS convergence sequence, but occurs at a similar frequency and follows the same pattern as in FtsK+ cells. Importantly, using ftsIts, ftsAts division mutants and cephalexin treated cells, we show that DNA loss of the dif region in the recB mutant is decreased by the inactivation of cell division. We propose that it results from septum-induced chromosome breakage, and largely contributes to the low viability of the recB mutant.

摘要

对大肠杆菌recB突变体染色体的标记频率分析显示,在染色体末端的一个特定区域(以dif/TerC区域为中心)存在DNA缺失。通过对一个标记染色体位点进行荧光显微镜观察,我们发现dif区域在复制完成后、细胞分裂时仅在一个子细胞中丢失,并且这种现象会传递给后代。标记频率分析和显微镜观察表明,DNA丢失的位置不是由复制叉合并点决定的,因为当在含有异位Ter位点的菌株中复制叉陷阱移位时,dif/TerC区域仍会发生DNA丢失。recB突变体中末端DNA的丢失也与XerCD在dif处的二聚体解析以及靠近dif处的拓扑异构酶IV的作用无关。它发生在末端区域,即GC偏斜反转的位置,这也是KOPS和Chi位点等特定序列基序的汇聚点,无论GC偏斜的汇聚点是在dif(野生型)还是新创建的序列处。在没有FtsK驱动的DNA易位的情况下,末端DNA的丢失对KOPS汇聚序列的靶向性较差,但发生频率与FtsK+细胞相似,且模式相同。重要的是,使用ftsIts、ftsAts分裂突变体和头孢氨苄处理的细胞,我们发现recB突变体中dif区域的DNA丢失会因细胞分裂失活而减少。我们认为这是由隔膜诱导的染色体断裂导致的,并且在很大程度上导致了recB突变体的低存活率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bc9/5638614/4e343e59a5b2/pgen.1006895.g001.jpg

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