首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Redox Reactions of and Transformation between Cysteine-Mercury Thiolate and Cystine in Metallothioneins Adsorbed at a Thin Mercury Film Electrode
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Redox Reactions of and Transformation between Cysteine-Mercury Thiolate and Cystine in Metallothioneins Adsorbed at a Thin Mercury Film Electrode

机译:汞薄膜电极上吸附的金属硫蛋白中半胱氨酸硫醇盐和胱氨酸的氧化还原反应和半胱氨酸之间的转化

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Voltammetric studies ofrabbit liver metallothioneins (MTs) adsorbed onto thin mercury films preformed onto glassy carbon electrodes were carried out in MT-free phosphate buffers in an attempt to shed light on the possible redox-modulated MT metal-transfer processes. The redox behavior of the surface-confined MTs was studied by cyclic voltammetry and differential pulse voltammetry, and the amount of MT adsorption was quantified by a flow-injection quartz crystal microbalance. Two reversible redox waves, with E_p values at -0.63 and -0.91V, respectively, were observed for the first time. These values and the overall voltammetric characteristics were found to be remarkably analogous to those of cysteine adsorbates at thin mercury films. The peak at E_p = -0.63V is attributable to the reduction of the Cys-mercury thiolates formed between the adsorbed MTs and the mercury electrode, whereas that at Er_(pc)= -0.91V is assigned to the reduction of Cys-Cys (cystine analogue) present in the portion of the MT adsorbate that is not in direct contact with the mercury film. The two redox waves were observed to be interchangeable through preelectrolysis at a negative potential (e.g., -1.1 V to reduce the MT adsorhate, or at a more positive potential (e.g., -0.1 V) to oxidize the adsorbed MTs. On the basis ofthese voltammetric results, we proposed a simple schematic to elucidate the redox reactions of and the transformation between the cysteine-mercury thiolates and cystines that are present in the MT adsorbates under different electrochemical redox conditions. Since the electrochemical reduction of the cystne analogues in the MT adsorbates to the corresponding cysteines (a process facilitating metal complexation) and the reoxidation of the cysteine residues back to cystine analogues (a process causing metal releasek )are both reversible, it appears that the metal transfer between MT and a substrate might accompany the variation of the redox states of the MT-metal complexes. Our voltammetric studies of MTs thus provide supportive evidence for the mechanism of the MT metal transfer in cytoplasmic milieu proposed by Vallee and co-workers.
机译:在不含MT的磷酸盐缓冲液中进行了吸附到预先沉积在玻璃碳电极上的薄汞膜上的兔肝金属硫蛋白(MT)的伏安研究,试图阐明可能的氧化还原调节MT金属转移过程。通过循环伏安法和差分脉冲伏安法研究了表面受限MT的氧化还原行为,并通过流动注射石英晶体微量天平对MT的吸附量进行了定量。首次观察到两个E_p值分别为-0.63和-0.91V的可逆氧化还原波。发现这些值和总体伏安特性与汞薄膜上的半胱氨酸吸附物非常相似。 E_p = -0.63V处的峰归因于吸附MTs与汞电极之间形成的Cys巯基汞盐的减少,而Er_(pc)= -0.91V处的峰归因于Cys-Cys的减少(胱氨酸类似物)存在于MT吸附物未与汞膜直接接触的部分中。观察到两个氧化还原波可以通过预电解在负电位(例如-1.1 V以还原MT吸附物)或在更高电位(例如-0.1 V)以氧化吸附的MT时互换。伏安法结果,我们提出了一个简单的示意图,以阐明在不同的电化学氧化还原条件下,MT吸附物中存在的半胱氨酸汞硫醇盐和胱氨酸之间的氧化还原反应以及它们之间的转化。到相应的半胱氨酸(促进金属络合的过程)和半胱氨酸残基再氧化成胱氨酸类似物(引起金属释放的过程)都是可逆的,看来MT和底物之间的金属转移可能伴随着MT-金属配合物的氧化还原状态,因此我们对MT的伏安研究为机理提供了支持性证据Vallee及其同事提出的MT金属在细胞质环境中的转移

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