首页> 美国卫生研究院文献>Nucleic Acids Research >TPM analyses reveal that FtsK contributes both to the assembly and the activation of the XerCD-dif recombination synapse
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TPM analyses reveal that FtsK contributes both to the assembly and the activation of the XerCD-dif recombination synapse

机译:TPM分析表明FtsK既有助于XerCD-dif重组突触的组装又有助于其激活。

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摘要

Circular chromosomes can form dimers during replication and failure to resolve those into monomers prevents chromosome segregation, which leads to cell death. Dimer resolution is catalysed by a highly conserved site-specific recombination system, called XerCD-dif in Escherichia coli. Recombination is activated by the DNA translocase FtsK, which is associated with the division septum, and is thought to contribute to the assembly of the XerCD-dif synapse. In our study, direct observation of the assembly of the XerCD-dif synapse, which had previously eluded other methods, was made possible by the use of Tethered Particle Motion, a single molecule approach. We show that XerC, XerD and two dif sites suffice for the assembly of XerCD-dif synapses in absence of FtsK, but lead to inactive XerCD-dif synapses. We also show that the presence of the γ domain of FtsK increases the rate of synapse formation and convert them into active synapses where recombination occurs. Our results represent the first direct observation of the formation of the XerCD-dif recombination synapse and its activation by FtsK.
机译:环状染色体在复制过程中会形成二聚体,如果无法将其解析为单体,则会阻止染色体分离,从而导致细胞死亡。二聚体的分解是由高度保守的位点特异性重组系统催化的,该系统在大肠杆菌中称为XerCD-dif。重组由与分隔隔膜相关的DNA转位酶FtsK激活,并被认为有助于XerCD-dif突触的组装。在我们的研究中,通过使用束缚粒子运动(一种单一分子方法),可以直接观察XerCD-dif突触的组装过程,而该过程以前是其他方法无法实现的。我们显示XerC,XerD和两个dif站点足以在没有FtsK的情况下装配XerCD-dif突触,但会导致XerCD-dif突触失活。我们还显示FtsK的γ域的存在会增加突触形成的速率,并将它们转换为发生重组的活性突触。我们的结果代表了XerCD-dif重组突触的形成及其被FtsK激活的首次直接观察。

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