化学
化学计量学
铜
催化作用
硫醇
半胱氨酸
胱氨酸
无机化学
水溶液
硫黄
氧化还原
高分子化学
有机化学
酶
作者
Adelio Rigo,Alessandra Corazza,Maria Luisa Di Paolo,Monica Rossetto,Raffaella Ugolini,Marina Scarpa
标识
DOI:10.1016/j.jinorgbio.2004.06.008
摘要
Copper complexes with cysteine have been investigated by optical spectroscopy, NMR and ESR. Cuprous ions strongly bind to the thiol group of Cys forming polymeric species with bridging thiolate sulfur according to a stoichiometry of about 1:1.2 and stability constant of the order of 1010 M−1. Cupric ions in the presence of cysteine, up to a ratio 0.45:1, are reduced to Cu(I) with stoichiometric production of cystine. The Cu(I) produced by this reaction is complexed by the excess of Cys. Trace amounts of Cu(II) exceeding the ratio 0.45:1 induce fast and complete oxidation of the Cys–Cu(I) complex to cystine with concomitant production of Cu(0) which precipitates. The experimental data are consistent with a mechanism by which Cu(II) oxidizes the complex Cys–Cu(I) to cystine producing aqueous Cu(I) which undergoes dismutation regenerating Cu(II). According to this mechanism the uncomplexed Cu(II) plays a catalytic oxidative role in the absence of molecular oxygen. The biological significance of these reactions is discussed.
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