首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Mechanisms of Action of Escapin a Bactericidal Agent in the Ink Secretion of the Sea Hare Aplysia californica: Rapid and Long-Lasting DNA Condensation and Involvement of the OxyR-Regulated Oxidative Stress Pathway
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Mechanisms of Action of Escapin a Bactericidal Agent in the Ink Secretion of the Sea Hare Aplysia californica: Rapid and Long-Lasting DNA Condensation and Involvement of the OxyR-Regulated Oxidative Stress Pathway

机译:Escapin的作用机理一种杀菌剂在加利福尼亚州海兔海藻中的墨水分泌中:快速和持久的DNA浓缩和OxyR调节的氧化应激途径的参与

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摘要

The marine snail Aplysia californica produces escapin, an l-amino acid oxidase, in its defensive ink. Escapin uses l-lysine to produce diverse products called escapin intermediate products of l-lysine (EIP-K), including α-amino-ε-caproic acid, Δ1-piperidine-2-carboxylic acid, and Δ2-piperidine-2-carboxylic acid. EIP-K and H2O2 together, but neither alone, is a powerful bactericide. Here, we report bactericidal mechanisms of escapin products on Escherichia coli. We show that EIP-K and H2O2 together cause rapid and long-lasting DNA condensation: 2-min treatment causes significant DNA condensation and killing, and 10-min treatment causes maximal effect, lasting at least 70 h. We isolated two mutants resistant to EIP-K plus H2O2, both having a single missense mutation in the oxidation regulatory gene, oxyR. A complementation assay showed that the mutated gene, oxyR(A233V), renders resistance to EIP-K plus H2O2, and a gene dosage effect leads to reduction of resistance for strains carrying wild-type oxyR. Temperature stress with EIP-K does not produce the bactericidal effect, suggesting the effect is due to a specific response to oxidative stress. The null mutant for any single DNA-binding protein—Dps, H-NS, Hup, Him, or MukB—was not resistant to EIP-K plus H2O2, suggesting that no single DNA-binding protein is necessary to mediate this bactericidal effect, but allowing for the possibility that EIP-K plus H2O2 could function through a combination of DNA-binding proteins. The bactericidal effect of EIP-K plus H2O2 was eliminated by the ferrous ion chelator 1,10-phenanthroline, and it was reduced by the hydroxyl radical scavenger thiourea, suggesting hydroxyl radicals mediate the effects of EIP-K plus H2O2.
机译:海洋蜗牛加州鸭嘴豆在其防御性墨水中会产生escapin(一种l-氨基酸氧化酶)。 Escapin使用l-赖氨酸生产多种产品,称为l-赖氨酸的ecapin中间产物(EIP-K),包括α-氨基-ε-己酸,Δ 1 -哌啶-2-羧酸,和Δ 2 -哌啶-2-羧酸。 EIP-K和H2O2一起(但都不单独)是一种强大的杀菌剂。在这里,我们报告了大肠埃希菌素产品对大肠杆菌的杀菌机理。我们显示EIP-K和H2O2共同引起快速而持久的DNA缩合:2分钟的处理会导致DNA的大量缩合和杀死,而10分钟的处理会产生最大的效果,持续至少70小时。我们分离了两个对EIP-K和H2O2有抗性的突变体,它们都在氧化调节基因oxyR中有一个错义突变。互补分析表明,突变基因oxyR(A233V)对EIP-K和H2O2产生抗性,基因剂量效应导致携带野生型oxyR的菌株的抗性降低。 EIP-K引起的温度胁迫不会产生杀菌作用,表明该作用是由于对氧化应激的特定反应所致。任何单一DNA结合蛋白(Dps,H-NS,Hup,Him或MukB)的无效突变体都不会对EIP-K和H2O2产生抗性,这表明不需要单个DNA结合蛋白来介导这种杀菌作用,但考虑到EIP-K和H2O2可以通过结合DNA的结合蛋白起作用的可能性。亚铁离子螯合剂1,10-菲咯啉消除了EIP-K和H2O2的杀菌作用,而羟自由基清除剂硫脲降低了EIP-K和H2O2的杀菌作用,表明羟基自由基介导了EIP-K和H2O2的作用。

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