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The Chemical Biology of the Persulfide (RSSH)/Perthiyl (RSS·) Redox Couple and Possible Role in Biological Redox Signaling

机译:过硫化物(RSSH)/巯基(RSS·)氧化还原对的化学生物学及其在生物氧化还原信号传导中的可能作用

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摘要

The recent finding that hydropersulfides (RSSH) are biologically prevalent in mammalian systems has prompted further investigation of their chemical properties in order to provide a basis for understanding their potential functions, if any. Hydropersulfides have been touted as hyper-reactive thiol-like species that possess increased nucleophilicity and reducing capabilities compared to their thiol counterparts. Herein, using persulfide generating model systems, the ability of RSSH species to act as one-electron reductants has been examined. Not unexpectedly, RSSH is relatively easily oxidized, compared to thiols, by weak oxidants to generate the perthiyl radical (RSS·). Somewhat surprisingly, however, RSS· was found to be stable in the presence of both O2 and NO and only appears to dimerize. Thus, the RSSH/RSS· redox couple is readily accessible under biological conditions and since dimerization of RSS· may be a rare event due to low concentrations and/or sequestration within a protein, it is speculated that the general lack of reactivity of individual RSS· species may allow this couple to be utilized as a redox component in biological systems.
机译:最近发现氢过硫化物(RSSH)在哺乳动物系统中生物学盛行,这促使人们对其化学性质进行进一步研究,从而为了解其潜在功能(如果有)奠定基础。氢过硫化物被吹捧为高反应性硫醇样物质,与它们的硫醇对应物相比,具有更高的亲核性和降低的能力。在此,使用过硫化物生成模型系统,已经检验了RSSH物种充当单电子还原剂的能力。毫不奇怪,与巯基相比,RSSH相对较弱地被弱氧化剂氧化而生成巯基(RSS·)。然而,出乎意料的是,发现RSS·在O2和NO同时存在下是稳定的,并且只会二聚。因此,RSSH / RSS·氧化还原对在生物学条件下很容易获得,并且由于蛋白质中的低浓度和/或螯合,RSS·二聚化可能是罕见的事件,因此推测单个RSS普遍缺乏反应性物种可能允许这对夫妇用作生物系统中的氧化还原成分。

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