谷胱甘肽、半胱氨酸和青霉胺硫基自由基反应的ESR研究:竞争性形成RSO。, r ., rssr -。,以及RSS(.)。

D Becker, S Swarts, M Champagne, M D Sevilla
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引用次数: 63

摘要

用电子自旋共振光谱法研究了半胱氨酸、谷胱甘肽和青霉胺三种巯基自由基在冷冻水溶液中与氧及其母体巯基的反应。观察到的主要硫自由基有:(1)硫基自由基RS;(2)二硫自由基阴离子。RSSR -。(3)过硫基自由基(RSS)。在引入氧气之后;(4)亚砜基自由基RSO。式中,R表示半胱氨酸、谷胱甘肽或青霉胺部分的剩余部分。观察到的自由基产物取决于pH值、硫醇浓度和氧分子的存在与否。我们发现亚砜基自由基是这些重要生物化合物自由基化学中普遍存在的中间体,并表明过氧自由基对巯基的攻击可能导致亚砜基自由基的产生。我们详细阐述了观察到的导致亚砜基自由基的反应序列,并使用17O同位素取代研究,证明了亚砜基自由基中的氧原子来自溶解的分子氧。此外,发现谷胱甘肽巯基自由基从谷胱甘肽半胱氨酸残基上的α -碳位置上提取氢,形成碳中心自由基。
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An ESR investigation of the reactions of glutathione, cysteine and penicillamine thiyl radicals: competitive formation of RSO., R., RSSR-., and RSS(.).

The reactions of the cysteine, glutathione and penicillamine thiyl radicals with oxygen and their parent thiols in frozen aqueous solutions have been elucidated through electron spin resonance spectroscopy. The major sulfur radicals observed are: (1) thiyl radicals, RS.; (2) disulfide radical anions. RSSR-.; (3) perthiyl radicals, RSS. and upon introduction of oxygen; (4) sulfinyl radicals, RSO., where R represents the remainder of the cysteine, glutathione or penicillamine moiety. The radical product observed depends on the pH, concentration of thiol, and presence or absence of molecular oxygen. We find that the sulfinyl radical is a ubiquitous intermediate in the free radical chemistry of these important biological compounds, and also show that peroxyl radical attack on thiols may lead to sulfinyl radicals. We elaborate the observed reaction sequences that lead to sulfinyl radicals, and, using 17O isotopic substitution studies, demonstrate that the oxygen atom in sulfinyl radicals originates from dissolved molecular oxygen. In addition, the glutathione thiyl radical is found to abstract hydrogen from the alpha-carbon position on the cysteine residue of glutathione to form a carbon-centered radical.

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