Chen P, Onana P, Shaw C F, Petering D H
Department of Chemistry, University of Wisconsin-Milwaukee 53201, USA.
Biochem J. 1996 Jul 15;317 ( Pt 2)(Pt 2):389-94. doi: 10.1042/bj3170389.
Cu,Zn-metallothioneins were purified from bovine calf liver in order to examine the stoichiometry of metal binding to the protein. Copper and zinc analyses were carried out by atomic absorption spectrophotometry. Consistent quantitative thiolate analyses were obtained spectrophotometrically with Ellman's reagent and amperometrically with phenylmercuric acetate. These were used to define protein concentration. A complementary method to assess the sum of the thiol and Cu(I) content of metallothionein involved titration of the reducing equivalents of the protein with ferricyanide. The stoichiometry of reaction was consistent with the oxidation of all the sulphydryl groups to disulphides and all of the bound Cu from the cuprous to the cupric oxidation state. Accordingly to these methods, total numbers of zinc plus copper ions bound to metallothionein isolated from a number of calf livers centred on about 7, 10-12, or 15 g-atoms of metal per mol of protein. The reactivity of ferricyanide and 4,7-phenylsulphonyl-2,9-dimethyl-1, 10-phenanthroline (BCS) with Cu,Zn-metallothioneins of various metal ratios was assessed. Zinc metallothionein reacted almost entirely in two slow steps with ferricyanide. As the Cu content of the protein increased, the fraction of reaction occurring in the time of mixing increased in parallel. BCS was able to remove 70-80% of metallothionein-bound Cu as Cu(I). The rest was resistant to reaction.
从牛犊肝脏中纯化出铜锌金属硫蛋白,以研究金属与该蛋白质结合的化学计量关系。通过原子吸收分光光度法进行铜和锌的分析。使用埃尔曼试剂通过分光光度法以及用乙酸苯汞通过安培法进行一致的定量硫醇盐分析。这些方法用于确定蛋白质浓度。一种评估金属硫蛋白中硫醇和Cu(I)含量总和的补充方法涉及用铁氰化物滴定蛋白质的还原当量。反应的化学计量关系与所有巯基氧化为二硫键以及所有结合的铜从亚铜氧化态氧化为铜氧化态一致。根据这些方法,从多个牛犊肝脏中分离得到的与金属硫蛋白结合的锌离子和铜离子的总数,以每摩尔蛋白质约7、10 - 12或15克原子的金属为中心。评估了铁氰化物和4,7 - 苯基磺酰基 - 2,9 - 二甲基 - 1,10 - 菲咯啉(BCS)与不同金属比例的铜锌金属硫蛋白的反应活性。锌金属硫蛋白与铁氰化物几乎完全以两个缓慢步骤反应。随着蛋白质中铜含量的增加,混合时发生反应的部分也平行增加。BCS能够去除70 - 80%与金属硫蛋白结合的铜作为Cu(I)。其余部分对反应具有抗性。