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Redox-Innocent Metal-Assisted Cleavage of S-S Bond in a Disulfide-Containing Ligand

机译:含二硫键的配体中S-S键的氧化还原无毒金属辅助裂解

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摘要

Due to their redox capabilities, thiols have an important role in biological oxidative/reductive processes through the formation of disulfides or their oxidation to into sulfenic, sulfinic, or sulfonic derivatives being also relevant for specific enzyme activities. The mechanisms of these biological pathways often involve metal ion(s). In this case, deciphering metal-assisted transformation of the S-S bond is of primary interest. This report details the reactivity of the disulfide-containing 2,6-bis [(bis(pyridylmethyl)amino)methyl]-4-methylmercaptophenyldisulfide (LMe(BPA)S-S) ligand with Cu(II) using different experimental conditions (anaerobic, H2O-only, H2O/O-7, or O-2-only). Crystallographic snapshots show the formation of tetranudear disulfide, dinuclear sulfinate, and sulfonate complexes. Mechanistic investigations using Zn(II) as control indicate a non-metal-redox-assisted process in all cases. When present, water acts as nucleophile and attacks at the S-S bond. Under anhydrous conditions, a different pathway involving a direct O-2 attack at the disulfide is proposed.
机译:由于它们的氧化还原能力,硫醇在生物氧化/还原过程中起重要作用,因为二硫化物的形成或它们被氧化成亚磺酸,亚磺酸或磺酸衍生物也与特定的酶活性有关。这些生物途径的机制通常涉及金属离子。在这种情况下,破译S-S键的金属辅助转变是最重要的。该报告详细介绍了使用不同的实验条件(厌氧,水),含二硫化物的2,6-双[(双(吡啶基甲基)氨基)甲基] -4-甲基巯基苯基二硫(LMe(BPA)SS)配体与Cu(II)的反应性-,H2O / O-7或仅O-2-)。晶体学快照显示四核二硫化物,双核亚磺酸盐和磺酸盐配合物的形成。使用Zn(II)作为对照的机械研究表明,在所有情况下均采用非金属氧化还原辅助工艺。当存在时,水充当亲核试剂并攻击S-S键。在无水条件下,提出了一种涉及直接对二硫化物进行O-2攻击的途径。

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