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金属硫蛋白/二硫键相互作用、氧化应激与细胞锌的动员

Metallothionein/disulfide interactions, oxidative stress, and the mobilization of cellular zinc.

作者信息

Maret W

机构信息

Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Neurochem Int. 1995 Jul;27(1):111-7. doi: 10.1016/0197-0186(94)00173-r.

Abstract

Glutathione disulfide, the major cellular disulfide, releases zinc from metallothionein (MT) [W. Maret (1994) Oxidative metal release from metallothionein via zinc-thiol/disulfide interchange, Proc. natn. Acad. Sci. U.S.A. 91, 237-241]. Here, the interaction of rabbit liver MT-II with other selected biological disulfides (coenzyme A/glutathione mixed disulfide, coenzyme A disulfide, and cystamine) was investigated by measuring concomitant release of radioactive 65-zinc from MT. These disulfides react more rapidly than glutathione disulfide, thus underscoring the reactivity of zinc sulfur bonds in the clusters of MT and the importance of the MT/disulfide interaction as a chemical mechanism for mobilizing zinc from a thermodynamically stable zinc complex. Two implications of these in vitro findings are discussed. (i) Apparently, in the case of zinc which is redox inert, Nature has availed itself of the redox activity of the cysteine ligand to mobilize the metal, and, presumably to permit redox-control of cellular zinc distribution. The mobilization of zinc from MT suggests a possible function of MT as a physiological zinc donor. (ii) A shift of the glutathione redox balance under conditions of oxidative stress will accelerate metal release from MT. Such a disturbance of metal metabolism has important consequences for the progression of diseases such as Alzheimer's and Parkinson's disease where oxidative stress occurs in affected brain tissue.

摘要

谷胱甘肽二硫化物是细胞内主要的二硫化物,它能从金属硫蛋白(MT)中释放锌元素[W. 马雷(1994年),通过锌-硫醇/二硫化物交换从金属硫蛋白中氧化释放金属,《美国国家科学院院刊》91卷,237 - 241页]。在此,通过测量金属硫蛋白中放射性65 - 锌的伴随释放,研究了兔肝MT - II与其他选定的生物二硫化物(辅酶A/谷胱甘肽混合二硫化物、辅酶A二硫化物和胱胺)之间的相互作用。这些二硫化物的反应比谷胱甘肽二硫化物更快,从而突出了金属硫蛋白簇中锌硫键的反应活性以及金属硫蛋白/二硫化物相互作用作为从热力学稳定的锌络合物中动员锌的化学机制的重要性。讨论了这些体外研究结果的两个含义。(i)显然,对于氧化还原惰性的锌,大自然利用了半胱氨酸配体的氧化还原活性来动员金属,并且推测是为了允许对细胞内锌分布进行氧化还原控制。从金属硫蛋白中动员锌表明金属硫蛋白可能具有作为生理性锌供体的功能。(ii)在氧化应激条件下谷胱甘肽氧化还原平衡的改变将加速锌从金属硫蛋白中的释放。这种金属代谢的紊乱对于诸如阿尔茨海默病和帕金森病等在受影响脑组织中发生氧化应激的疾病的进展具有重要影响。

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