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Asymmetric DNA requirements in Xer recombination activation by FtsK

机译:FtsK激活Xer重组中的不对称DNA要求

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摘要

In bacteria with circular chromosomes, homologous recombination events can lead to the formation of chromosome dimers. In Escherichia coli, chromosome dimers are resolved by the addition of a crossover by two tyrosine recombinases, XerC and XerD, at a specific site on the chromosome, dif. Recombination depends on a direct contact between XerD and a cell division protein, FtsK, which functions as a hexameric double stranded DNA translocase. Here, we have investigated how the structure and composition of DNA interferes with Xer recombination activation by FtsK. XerC and XerD each cleave a specific strand on dif, the top and bottom strand, respectively. We found that the integrity and nature of eight bottom-strand nucleotides and three top-strand nucleotides immediately adjacent to the XerD-binding site of dif are crucial for recombination. These nucleotides are probably not implicated in FtsK translocation since FtsK could translocate on single stranded DNA in both the 5′–3′ and 3′–5′ orientation along a few nucleotides. We propose that they are required to stabilize FtsK in the vicinity of dif for recombination to occur because the FtsK–XerD interaction is too transient or too weak in itself to allow for XerD catalysis.
机译:在具有圆形染色体的细菌中,同源重组事件可导致染色体二聚体的形成。在大肠杆菌中,通过在染色体dif的特定位点添加两个酪氨酸重组酶XerC和XerD的交换来解决染色体二聚体。重组取决于XerD与细胞分裂蛋白FtsK的直接接触,该蛋白起着六聚体双链DNA转位酶的作用。在这里,我们研究了DNA的结构和组成如何干扰FtsK的Xer重组激活。 XerC和XerD分别在dif(顶部和底部)上切割一条特定的链。我们发现,与dif的XerD结合位点紧邻的8个底部链核苷酸和3个顶部链核苷酸的完整性和性质对于重组至关重要。这些核苷酸可能与FtsK的易位无关,因为FtsK可以沿5个3'-3'和3'-5'的方向沿着几个核苷酸在单链DNA上移位。我们建议他们需要将FtsK稳定在dif附近才能发生重组,因为FtsK-XerD相互作用本身太短暂或太弱而无法进行XerD催化。

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