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首页> 外文期刊>RSC Advances >Oxidation of free, peptide and protein tryptophan residues mediated by AAPH-derived free radicals: role of alkoxyl and peroxyl radicals
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Oxidation of free, peptide and protein tryptophan residues mediated by AAPH-derived free radicals: role of alkoxyl and peroxyl radicals

机译:由Aaph衍生的自由基介导的自由,肽和蛋白质色氨酸残留物的氧化:烷氧基和过氧基的作用

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摘要

The oxidation of tryptophan (Trp) residues, mediated by peroxyl radicals (ROO˙), follows a complex mechanism involving free radical intermediates, and short chain reactions. The reactivity of Trp towards ROO˙ should be strongly affected by its inclusion in peptides and proteins. To examine the latter, we investigated (by fluorescence) the kinetic of the consumption of free, peptide- and protein-Trp residues towards AAPH (2,2′-azobis(2-amidinopropane)dihydrochloride)-derived free radicals. Interestingly, the initial consumption rates ( R _(i) ) were only slightly influenced by the inclusion of Trp in small peptides and proteins (human serum albumin and human superoxide dismutase). Depending on the Trp concentration, the R _(i) versus Trp concentration ([Trp]) plots showed three regions. At low Trp concentrations (1–10 μM), a linear dependence was observed between R _(i) and [Trp]; at intermediate Trp concentrations (10–50 μM), the values of R _(i) were nearly constant; and at high Trp concentrations (50 μM to 1 mM), a slower increase of R _(i) than expected for chain reactions. Similar behavior was detected for all three systems (free Trp, and Trp in peptides and proteins). For the first time we are showing that alkoxyl radicals, formed from self-reaction of ROO˙, are responsible of the Trp oxidation at low concentrations, while at high Trp concentrations, a mixture of peroxyl and alkoxyl radicals are involved in the oxidation of Trp residues.
机译:由过氧基(Roo1)介导的色氨酸(TRP)残基的氧化遵循涉及自由基中间体和短链反应的复杂机制。 TRP朝向Roo的反应性应受其在肽和蛋白质中的包涵体受到强烈影响。为了检查后者,我们研究了(通过荧光)将自由,肽和蛋白质TRP残基的消耗的动力学朝向aaPH(2,2'-偶氮二(2-脒基丙烷)二盐酸盐)的自由基。有趣的是,初始消耗率(R _(i))仅受到小肽和蛋白质(人血清白蛋白和人超氧化物歧化酶)中的TRP略微影响。根据TRP浓度,R _(i)与TRP浓度([TRP])图显示了三个区域。在低TRP浓度(1-10μm),在R _(i)和[TRP]之间观察到线性依赖性;在中间TRP浓度(10-50μm),R _(i)的值几乎是恒定的;在高TRP浓度(50μm至1mm),R _(i)较慢增加比预期的链反应。对于所有三种系统(免费TRP和肽和蛋白质中的TRP)检测到类似的行为。我们首次表明,由罗氏的自反应形成的烷氧基,在低浓度下造成TRP氧化,而在高TRP浓度下,过氧基和烷氧基的混合物涉及TRP的氧化残留物。

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