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The dimer state of GyrB is an active form: implications for the initial complex assembly and processive strand passage

机译:GyrB的二聚体状态是一种活性形式:对最初的复杂组装和进行性链通过的影响

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摘要

In a previous study, we presented the dimer structure of DNA gyrase B′ domain (GyrB C-terminal domain) from Mycobacterium tuberculosis and proposed a ‘sluice-like’ model for T-segment transport. However, the role of the dimer structure is still not well understood. Cross-linking and analytical ultracentrifugation experiments showed that the dimer structure exists both in the B′ protein and in the full-length GyrB in solution. The cross-linked dimer of GyrB bound GyrA very weakly, but bound dsDNA with a much higher affinity than that of the monomer state. Using cross-linking and far-western analyses, the dimer state of GyrB was found to be involved in the ternary GyrA–GyrB–DNA complex. The results of mutational studies reveal that the dimer structure represents a state before DNA cleavage. Additionally, these results suggest that the dimer might also be present between the cleavage and reunion steps during processive transport.
机译:在先前的研究中,我们介绍了结核分枝杆菌的DNA促旋酶B'结构域(GyrB C末端结构域)的二聚体结构,并提出了一种“水闸状”模型进行T段运输。然而,二聚体结构的作用仍未很好理解。交联和分析超离心实验表明,溶液中B'蛋白和全长GyrB中均存在二聚体结构。 GyrB的交联二聚体非常弱地结合GyrA,但结合dsDNA的亲和力比单体态的亲和力高得多。使用交联和远西分析,发现GyrB的二聚态与三元GyrA–GyrB–DNA复合体有关。突变研究的结果表明,二聚体结构代表了DNA切割前的状态。此外,这些结果表明,在进行性运输过程中,在裂解和团聚步骤之间也可能存在二聚体。

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