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首页> 外文期刊>Chemical research in toxicology >Thiyl Radical Reaction with Amino Acid Side Chains:Rate Constants for Hydrogen Transfer and Relevance for Posttranslational Protein Modification
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Thiyl Radical Reaction with Amino Acid Side Chains:Rate Constants for Hydrogen Transfer and Relevance for Posttranslational Protein Modification

机译:巯基与氨基酸侧链的自由基反应:氢转移的速率常数和翻译后蛋白质修饰的相关性

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摘要

Thiyl radicals are prominent intermediates during biological conditions of oxidative stress and have been suggested to be involved in the mutagenic effects of thiols.While several enzymatic processes rely on the formation and selective reactions of protein thiyl radicals with substrates,such reactions may represent a source for biological damage when occurring uncontrolled during gxidative stress.For example,intramolecular hydrogen transfer reactions to protein cysteine thiyl radicals may lead to secondary amino acid oxidation products,which may represent starting points for protein aggregation and/or fragmentation.Here,we have used a kinetic NMR method to determine rate constants,k_(sc)for hydrogen transfer reactions between thiyl radicals and amino acid side chain C-H bonds at 37 deg C.Rate constants cover a range between k_(sc)<=1 X 10~3 M~(-1)s~(-1)(Val)and k_(sc)=1.6 x 105 M~(-1)s~(-1)(Ser).On the basis of these values and earlier data,model calculations are performed,which will demonstrate that protein thiyl radicals may attack protein C-H bonds via intramolecular hydrogen transfer at physiological conditions,potentially resulting in irreversible protein damage.
机译:巯基自由基是氧化应激的生物学条件下的重要中间体,并被认为参与了硫醇的诱变作用。尽管几种酶促过程依赖于蛋白质巯基自由基与底物的形成和选择性反应,但这些反应可能代表了在糖化应激期间不受控制时发生生物损伤。例如,分子间的氢转移到蛋白质半胱氨酸硫基自由基可能会导致仲氨基酸氧化产物,这可能代表蛋白质聚集和/或断裂的起点。在这里,我们使用了动力学NMR法测定37℃下巯基与氨基酸侧链CH键之间氢转移反应的速率常数k_(sc)。速率常数覆盖k_(sc)<= 1 X 10〜3 M〜( -1)s〜(-1)(Val)和k_(sc)= 1.6 x 105 M〜(-1)s〜(-1)(Ser)。基于这些值和较早的数据,模型计算如下执行,这将提示蛋白质巯基自由基可能会在生理条件下通过分子内氢转移攻击蛋白质C-H键,从而潜在地导致不可逆的蛋白质破坏。

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