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虹鳟(Oncorhynchus mykiss)胚胎对硒代蛋氨酸的代谢会产生氧化应激。

Metabolism of selenomethionine by rainbow trout (Oncorhynchus mykiss) embryos can generate oxidative stress.

作者信息

Palace Vince P, Spallholz Julian E, Holm Jodi, Wautier Kerry, Evans Robert E, Baron Christopher L

机构信息

Department of Fisheries and Oceans, Habitat Impacts Research, Freshwater Institute, 501 University Crescent, Winnipeg, MB, Canada R3T 2N6.

出版信息

Ecotoxicol Environ Saf. 2004 May;58(1):17-21. doi: 10.1016/j.ecoenv.2003.08.019.

Abstract

Although selenium is required by vertebrates, toxicity can arise at concentrations only slightly greater than those they require. The toxicity of Se is thought to arise from its ability to substitute for sulfur during the assembly of proteins. However, recent studies also indicate that some forms of selenium are capable of generating oxidative stress in an in vitro test system that includes glutathione. L-Selenomethionine, the predominant form of selenium in the eggs of oviparous vertebrates, does not generate oxidative radicals in this system, but lesions consistent with oxidative stress have been identified in fish and birds with high concentrations of Se. Here we report on the ability of rainbow trout embryos to transform L-Selenomethionine to a form capable of producing a superoxide radical. Oxidative stress appears to be generated by methioninase enzyme activity in the embryos that liberates methylselenol from l-Selenomethionine. Methylselenol redox cycles in the presence of glutathione producing superoxide and likely accounts for oxidative lesions present in fish and birds environmentally exposed to excessive loads of selenomethionine.

摘要

尽管脊椎动物需要硒,但在仅略高于其所需浓度的情况下就可能产生毒性。硒的毒性被认为源于其在蛋白质组装过程中替代硫的能力。然而,最近的研究还表明,某些形式的硒在包含谷胱甘肽的体外测试系统中能够产生氧化应激。L-硒代蛋氨酸是卵生脊椎动物卵中硒的主要形式,在该系统中不会产生氧化自由基,但在硒含量高的鱼类和鸟类中已发现与氧化应激一致的损伤。在此我们报告虹鳟鱼胚胎将L-硒代蛋氨酸转化为能够产生超氧自由基的形式的能力。氧化应激似乎是由胚胎中的蛋氨酸酶活性产生的,该酶活性从L-硒代蛋氨酸中释放出甲基硒醇。甲基硒醇在谷胱甘肽存在下进行氧化还原循环,产生超氧化物,这可能是环境中暴露于过量硒代蛋氨酸的鱼类和鸟类中存在氧化损伤的原因。

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