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Plumbagin inhibits cytokinesis in Bacillus subtilis by inhibiting FtsZ assembly - a mechanistic study of its antibacterial activity

机译:Plumbagin通过抑制FtsZ组装来抑制枯草芽孢杆菌的胞质分裂-抗菌活性的机理研究

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摘要

The assembly of FtsZ plays a central role in construction of the cytokinetic Z-ring that orchestrates bacterial cell division. A naturally occurring naphthoquinone, plumbagin, is known to exhibit antibacterial properties against several types of bacteria. In this study, plumbagin was found to perturb formation of the Z-ring in Bacillussubtilis 168 cells and to cause elongation of these cells without an apparent effect on nucleoid segregation, indicating that it may inhibit FtsZ assembly. Furthermore, it bound to purified B.subtilis FtsZ (BsFtsZ) with a dissociation constant of 20.7 +/- 5.6m, and inhibited the assembly and GTPase activity of BsFtsZ invitro. Interestingly, plumbagin did not inhibit either the assembly or GTPase activity of Escherichiacoli FtsZ (EcFtsZ) invitro. Using docking analysis, a putative plumbagin-binding site on BsFtsZ was identified, and the analysis indicated that hydrophobic interactions and hydrogen bonds predominate. Based on the insilico analysis, two variants of BsFtsZ, namely D199A and V307R, were constructed to explore the binding interaction of plumbagin and BsFtsZ. The effects of plumbagin on the assembly and GTPase activity of the variant BsFtsZ proteins invitro indicated that the residues D199 and V307 may be involved in the binding of plumbagin to BsFtsZ. The results suggest that plumbagin inhibits bacterial proliferation by inhibiting the assembly of FtsZ, and provide insight into the binding site of plumbagin on BsFtsZ, which may help in the design of potent FtsZ-targeted antibacterial agents.
机译:FtsZ的组装在协调细菌细胞分裂的细胞动力学Z环的构建中起着核心作用。众所周知,一种天然存在的萘醌(铅)可对几种细菌表现出抗菌性能。在这项研究中,发现李小瓜干扰了枯草芽孢杆菌168细胞中Z环的形成,并导致这些细胞的伸长而对核苷的分离没有明显影响,表明它可能抑制FtsZ的组装。此外,它以20.7 +/- 5.6m的解离常数与纯化的枯草芽孢杆菌FtsZ(BsFtsZ)结合,并抑制了BsFtsZ的体外组装和GTPase活性。有趣的是,plumbagin既不抑制Escherichiacoli FtsZ(EcFtsZ)的装配也没有抑制GTPase活性。使用对接分析,在BsFtsZ上确定了一个假定的铅皮结合位点,该分析表明疏水相互作用和氢键占主导地位。基于计算机分析,构建了BsFtsZ的两个变体,即D199A和V307R,以探索plumbagin与BsFtsZ的结合相互作用。洋白蛋白对变体BsFtsZ蛋白的组装和GTP酶活性的影响表明,残基D199和V307可能参与了洋白蛋白与BsFtsZ的结合。结果表明,李青素通过抑制FtsZ的装配来抑制细菌增殖,并提供对李青素在BsFtsZ上的结合位点的深入了解,这可能有助于设计针对FtsZ的有效抗菌剂。

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