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首页> 外文期刊>Archives of Biochemistry and Biophysics >Hydroxyl radical scavenging of the compatible solute ectoine generates two N-acetimides
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Hydroxyl radical scavenging of the compatible solute ectoine generates two N-acetimides

机译:相容溶质胞外的羟基自由基清除产生两种N-乙酰亚胺

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摘要

Living cells employ various defence mechanisms against reactive oxygen species and free radicals. Besides protecting enzymes such as superoxide dismutase, catalase and peroxidase, non-enzymatic antioxidant molecules also play an important role as radical scavengers. Within bacteria the amino acid derivative ectoine (2-methyl-3,4,5,6-tetrahydropyrimidine-4-carboxylate) is the most abundant compatible solute and stress protectant. Although this compound is already produced commercially for applications as moisturizer and skin-care product, it has been a matter of debate whether ectoine also has radical-scavenging activity. Here we report on its hydroxyl radical scavenging activity in comparison to other compatible solutes and describe the reaction products obtained when ectoine is exposed to hydroxyl radicals generated by the Fenton reaction. In a sodium salicylate scavenging test system this compatible solute performed as well as mannitol. As a consequence of its reaction with hydroxyl radicals, ectoine was converted into two major products: N-acetimide aspartate and N-acetimide-beta-alanine. We propose a reaction mechanism in which the heterocycle of the compatible solute ectoine is cleaved and further oxidized at the C-terminus. The proven radical scavenging ability of ectoine will help to explain observed effects as anti-inflammatory compound in skin, lung and bowel disease.
机译:生物细胞采用各种防御机制针对反应性氧物种和自由基。除了保护酶如超氧化物歧化酶,过氧化氢酶和过氧化物酶之外,非酶促抗氧化分子也是激进清除剂的重要作用。细菌内氨基酸衍生物胞外(2-甲基-3,4,5,6-四氢嘧啶-4-羧酸盐)是最丰富的兼容溶质和应激保护剂。虽然这种化合物已经在商业上用于作为保湿剂和皮肤护理产品的应用,但它是争论的争论问题是否也具有激进的清除活性。在这里,我们报告其羟基自由基清除活性与其他相容的溶质相比,并描述当胞外暴露于芬顿反应产生的羟基自由基时获得的反应产物。在水杨酸钠清除试验系统中,这种相容性溶质和甘露醇。由于其与羟基自由基的反应,胞外转化为两种主要产物:N-乙酰亚胺天冬氨酸和N-乙酰亚胺-β-丙氨酸。我们提出了一种反应机理,其中相容溶质胞外的杂环被切割并进一步在C-末端氧化。成熟的胞外的根治性清除能力将有助于将观察到的效果作为皮肤,肺和肠疾病中的抗炎化合物。

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