首页> 美国卫生研究院文献>Biochemical Journal >Stoichiometry and cluster specificity of copper binding to metallothionein: homogeneous metal clusters.
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Stoichiometry and cluster specificity of copper binding to metallothionein: homogeneous metal clusters.

机译:铜与金属硫蛋白结合的化学计量和簇特异性:均质金属簇。

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摘要

Experiments were done to define the stoichiometry of binding of Cu(I) to metallothionein (MT) and to determine its sites of binding in mixed-metal species. Spectrophotometric titrations of rabbit liver Cd7-MT 2, apoMT, and Cd4-alpha-domain with Cu(I) revealed endpoints of 3-4, 4 and 8, and 4 and 6-7 added Cu(I)/mol of MT for the three species respectively. Observed endpoints depended on conditions of the titration and the wavelength chosen for absorbance measurement. Nevertheless, from metal and sulphydryl analyses of titrated proteins that were pretreated with Chelex-100 to remove metal ions from solution, almost all of the cadmium was displaced from Cd7-MT by the addition of 7 Cu(I)/mol of MT. Similarly, 4 Cu(I)/mol of Cd4-alpha-domain completely displaced bound cadmium. The Cu4-alpha-domain was converted into a Cu6-alpha species upon addition of two equivalents of Cu(I)/mol of alpha-domain. Reaction of Cd7-MT with 7, 12 and 20 Cu/mol of MT, followed by reaction with Chelex resin, generated protein samples in each case with about 7 Cu/mol of MT. 111Cd-NMR analysis of the reaction of 111Cd7-MT with Cu(I) showed that nearly co-operative one-for-one replacement of 111Cd occurred and that the beta-domain cluster reacted before the alpha-domain cluster. Two mixed-metal MTs with Cu to Zn ratios approximating 3 to 4 and 6 to 4 were isolated from calf liver. After substitution of Zn with 111Cd, NMR spectra of each protein showed that 111Cd was confined almost completely to the alpha-domain. By inference, about 3 or 6 Cu were bound in the beta-domain of these proteins. Supporting this segregation of metal ions into domains, reaction of Cu6, Zn4-MT with nitrilotriacetate removed zinc exclusively, whereas reaction of Cu6,Cd4-MT with 4,7-phenylsulphonyl-2,9-dimethyl-1,10-phenanthroline extracted only Cu(I). Proteolytic digestion of both products followed by gel filtration demonstrated that Cu(I) and Cd were bound to fragments of the intact protein. Finally, reaction of rabbit liver 111Cd7-MT 2 with Cu10-MT 2 resulted in interprotein metal exchange in which 111Cd-moved from the beta- to the alpha-domain according to NMR analysis. In contrast with the prevalent view that six Cu(I) bind to each domain of MT, the present results show that Cu(I) binds to MT with a minimum stoichiometry of about 7 Cu(I)/mol of MT and can bind to the alpha-domain with stoichiometries of 4 or 6 Cu(I)/mol of MT. Although MTs interacting with 12 or 20 Cu(I)/mol of MT are less stable than that binding about 7 Cu(I)/mol, it appears that MT can bind Cu(I) in multiple stoichiometries.
机译:进行实验以定义Cu(I)与金属硫蛋白(MT)结合的化学计量,并确定其在混合金属物种中的结合位点。用Cu(I)分光光度滴定兔肝脏Cd7-MT 2,apoMT和Cd4-α-结构域显示终点3-4、4和8、4和6-7添加了Cu(I)/ mol MT这三种。观察到的终点取决于滴定条件和选择用于吸光度测量的波长。然而,从用Chelex-100预处理以从溶液中去除金属离子的滴定蛋白质的金属和硫杂醇分析来看,通过添加7 Cu(I)/ mol MT,几乎所有的镉都从Cd7-MT中移出。同样,4 Cu(I)/ mol的Cd4-alpha域完全取代了结合的镉。通过添加两个当量的Cu(I)/ molα-结构域,将Cu4-α-结构域转换为Cu6-α物种。 Cd7-MT与7、12和20 Cu / mol MT反应,然后与Chelex树脂反应,在每种情况下产生的蛋白质样品的MT含量约为7 Cu / mol。 111Cd7-MT与Cu(I)的反应的111Cd-NMR分析表明,发生了111Cd的几乎合作的一对一置换,并且β结构域簇在α结构域簇之前发生了反应。从小牛肝脏中分离出了两种铜/锌比约为3:4和6:4的混合金属MT。用111 Cd取代Zn后,每种蛋白质的NMR谱图表明111 Cd几乎完全局限于α-结构域。通过推断,在这些蛋白质的β结构域中结合了约3或6个Cu。为了支持金属离子向畴内的分离,Cu6,Zn4-MT与次氮基三乙酸酯的反应仅去除了锌,而Cu6,Cd4-MT与4,7-苯基磺酰基-2,9-二甲基-1,10-菲咯啉的反应仅被提取铜(I)。两种产物的蛋白水解消化,然后进行凝胶过滤,表明Cu(I)和Cd与完整蛋白的片段结合。最后,兔肝111Cd7-MT 2与Cu10-MT 2的反应导致蛋白间金属交换,其中NMR分析显示111Cd从β结构域转移到α结构域。与普遍认为六个Cu(I)结合MT的每个域相反,本研究结果表明Cu(I)以最小化学计量约为7 Cu(I)/ mol MT结合MT,并且可以结合到MT MT域化学计量为4或6 Cu(I)/ mol的α域。尽管与12或20 Cu(I)/ mol MT相互作用的MT的稳定性低于结合约7 Cu(I)/ mol MT的稳定性,但看来MT可以多种化学计量学结合Cu(I)。

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