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关于DNA链通过在微菌素B17作用于DNA促旋酶机制中的作用的证据。

Evidence for the role of DNA strand passage in the mechanism of action of microcin B17 on DNA gyrase.

作者信息

Pierrat Olivier A, Maxwell Anthony

机构信息

Department of Biological Chemistry, John Innes Centre, Norwich Research Park, Colney, Norwich NR4 7UH, United Kingdom.

出版信息

Biochemistry. 2005 Mar 22;44(11):4204-15. doi: 10.1021/bi0478751.

DOI:10.1021/bi0478751
PMID:15766248
Abstract

Microcin B17 (MccB17) is a DNA gyrase poison; in previous work, this bacterial toxin was found to slowly and incompletely inhibit the reactions of supercoiling and relaxation of DNA by gyrase and to stabilize the cleavage complex, depending on the presence of ATP and the DNA topology. We now show that the action of MccB17 on the gyrase ATPase reaction and cleavage complex formation requires a linear DNA fragment of more than 150 base pairs. MccB17 is unable to stimulate the ATPase reaction by stabilizing the weak interactions between short linear DNA fragments (70 base pairs or less) and gyrase, in contrast with the quinolone ciprofloxacin. However, MccB17 can affect the ATP-dependent relaxation of DNA by gyrase lacking its DNA-wrapping or ATPase domains. From these findings, we propose a mode of action of MccB17 requiring a DNA molecule long enough to allow the transport of a segment through the DNA gate of the enzyme. Furthermore, we suggest that MccB17 may trap a transient intermediate state of the gyrase reaction present only during DNA strand passage and enzyme turnover. The proteolytic signature of MccB17 from trypsin treatment of the full enzyme requires DNA and ATP and shows a protection of the C-terminal 47-kDa domain of gyrase, indicating the involvement of this domain in the toxin mode of action and consistent with its proposed role in the mechanism of DNA strand passage. We suggest that the binding site of MccB17 is in the C-terminal domain of GyrB.

摘要

微小菌素B17(MccB17)是一种DNA回旋酶毒素;在之前的研究中,发现这种细菌毒素会缓慢且不完全地抑制回旋酶对DNA的超螺旋化和松弛反应,并根据ATP的存在情况和DNA拓扑结构稳定切割复合物。我们现在表明,MccB17对回旋酶ATP酶反应和切割复合物形成的作用需要一个超过150个碱基对的线性DNA片段。与喹诺酮类环丙沙星不同,MccB17无法通过稳定短线性DNA片段(70个碱基对或更少)与回旋酶之间的弱相互作用来刺激ATP酶反应。然而,MccB17可以影响缺乏DNA包裹或ATP酶结构域的回旋酶对DNA的ATP依赖性松弛。基于这些发现,我们提出了MccB17的一种作用模式,即需要一个足够长的DNA分子,以便一段DNA通过酶的DNA门进行转运。此外,我们认为MccB17可能捕获了仅在DNA链通过和酶周转过程中出现的回旋酶反应的瞬时中间状态。用胰蛋白酶处理完整酶得到的MccB17的蛋白水解特征需要DNA和ATP,并且显示出对回旋酶C末端47 kDa结构域的保护,这表明该结构域参与了毒素的作用模式,并且与其在DNA链通过机制中所提出的作用一致。我们认为MccB17的结合位点在GyrB的C末端结构域。

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