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Using Molecular Docking to Compare Toxicity of Reactive Chemicals to Freshwater and Marine Luminous Bacteria

机译:使用分子对接比较活性化学品对淡水和海洋发光细菌的毒性

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Abstract: Vibrio fischeri is a marine luminous bacterium that has been widely used in toxicity bioassays, while Vibrio qinghaiensis sp.-Q67 is a newly found freshwater species which is more suitable for the tests on freshwater samples. However, there is a sensitive difference between these two species due to the media, chemical modes of action and the tested species. It remains unclear how these factors induce toxicity changes in luminous bioassays. Therefore, by using molecular docking between reactive chemicals and the target proteins of Vibrio fischeri and Vibrio qinghaiensis sp.-Q67 respectively, the sensitive difference was explored from the angle of amino acid residues that in-volved in the interactions. Mutation of amino acid residues was performed to investigate the role of these amino acids in the interactions and the most important amino acid residues in toxicity effect were found. The results suggested tat the most important amino acid residues in toxicity effect would affect the binding affinity between chemicals and target proteins of Vibrio fischeri and Vibrio qinghaiensis sp.-Q67, and then induce distinct toxic effect on them. As there are fewer toxicity data for freshwater Vibrio qinghaiensis sp.-Q67 than for Vibrio fischeri, this study helps to take advantage of the plentiful toxicity data of Vibrio fischeri to predict toxicities of freshwater samples.
机译:摘要:费氏弧菌是一种海洋发光细菌,已广泛用于毒性生物测定,而青海弧菌-Q67是一种新近发现的淡水物种,更适合用于淡水样品的测试。但是,由于介质,化学作用方式和被测物种,这两种物种之间存在灵敏的差异。尚不清楚这些因素如何在发光生物测定法中引起毒性变化。因此,分别利用化学反应物和费氏弧菌和青海弧菌sp-Q67的靶蛋白之间的分子对接,从涉及相互作用的氨基酸残基角度探讨了敏感性差异。进行氨基酸残基突变以研究这些氨基酸在相互作用中的作用,并且发现了最重要的氨基酸残基在毒性作用中。结果表明,毒性作用中最重要的氨基酸残基将影响费氏弧菌和青海弧菌sp-Q67的化学物质与靶蛋白之间的结合亲和力,并对其产生明显的毒性作用。由于青海弧菌Q-67淡水弧菌的毒性数据少于费氏弧菌,因此本研究有助于利用费氏弧菌的大量毒性数据来预测淡水样品的毒性。

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