首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Dioxygen controls the nitrosylation reactions of a protein-bound [4Fe4S] cluster
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Dioxygen controls the nitrosylation reactions of a protein-bound [4Fe4S] cluster

机译:二恶英控制蛋白质结合的亚硝基化反应[4FE4S]簇

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摘要

Iron-sulfur clusters are exceptionally tuneable protein cofactors, and as one of their many roles they are involved in biological responses to nitrosative stress. Both iron-sulfur proteins and synthetic model clusters are extremely sensitive to nitrosylation, tending towards rapid multi-step reaction and cluster degradation. Reaction of protein-bound iron-sulfur clusters with nitric oxide can be stopped at partial nitrosylation in vivo, and repair of protein-bound nitrosylated clusters is possible in the cellular environment. We have used a combination of infrared, EPR, and UV-visible spectroscopies to show that a model [4Fe4S] cluster-containing protein, A. ferroxidans high potential iron-sulfur protein (HiPIP), reacts with NO to give a product mixture dominated by Roussin's Black Salt (RBS) and Roussin's Red Ester (RRE) species. We have shown that O-2 plays a critical role in controlling the major product of nitrosylation, with RBS-like products favoured under strictly anaerobic conditions and RRE favoured in the presence of trace O-2. Moreover, addition of trace O-2 to anaerobically nitrosylated samples induces conversion of RBS-like products to RRE. These findings may have implications for mechanisms of iron-sulfur cluster repair following nitrosative stress, suggest a crucial role for trace O-2, and provide an important link between nitrosylation chemistry of iron-sulfur proteins and the well-established reactivity of synthetic iron-sulfur clusters.
机译:铁硫簇是特殊可调调谐的蛋白质辅助剂,作为它们涉及其对亚硝态胁迫的生物反应的许多作用之一。铁 - 硫蛋白和合成模型簇都对亚硝基化非常敏感,趋向于快速的多步反应和簇劣化。蛋白质结合的铁 - 硫簇与一氧化氮的反应可以在体内的部分亚硝基化处停止,并且在细胞环境中可以进行蛋白质结合的亚硝基化簇的修复。我们使用了红外,EPR和UV可见光光谱的组合,表明含模型含含量的蛋白质,A.Ferroxidans高潜在的铁 - 硫蛋白(Hipip),反应不给予产品混合物由Roussin的黑盐(RB)和Roussin的红酯(RRE)物种。我们已经表明,O-2在控制亚硝基化的主要产物方面发挥着关键作用,其中RBS样产品在严格的厌氧条件下青睐,RRE在痕量O-2存在下青睐。此外,将痕量O-2添加到厌氧亚硝基化样品中诱导RBS样产品转化为RRE。这些发现可能对亚硝基胁迫进行铁 - 硫簇修复机制有影响,表明痕量O-2的关键作用,并提供了铁 - 硫蛋白质的亚硝基化化学和合成铁的良好反应性之间的重要联系硫簇。

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