Cismowski M J, Narula S S, Armitage I M, Chernaik M L, Huang P C
Department of Biochemistry, Johns Hopkins University, School of Hygiene and Public Health, Baltimore, Maryland 21205.
J Biol Chem. 1991 Dec 25;266(36):24390-7.
Using a yeast expression vector system, we have expressed both wild type and six mutated Chinese hamster metallothionein coding sequences in a metal-sensitive yeast strain in which the endogenous metallothionein gene has been deleted. The mutant proteins have single or double cysteine to tyrosine replacements (C13Y, C50Y, and C13,50Y), single cysteine to serine replacements (C13S and C50S), or a single cysteine to alanine replacement (C50A). These proteins function in their yeast host in cadmium detoxification to differing extents. Metallothioneins which contain a cysteine mutation at position 50 (C50Y, C50S, C50A, and C13,50Y) conferred markedly less cadmium resistance than wild type metallothionein, or metallothionein with a single cysteine mutation at position 13 (C13Y and C13S). Wild type and three of the mutant Chinese hamster metallothioneins (C13Y, C50Y, and C13,50Y) were purified from yeast grown in subtoxic levels of either CdCl2 or 113CdCl2. All three of the mutant proteins bound less cadmium than the wild type protein when metal-binding stoichiometries were determined. The one-dimensional 113Cd NMR spectrum of the recombinant wild type Chinese hamster metallothionein was compared to the spectra of native rat and rabbit liver metallothioneins. The close correspondence between the 113Cd chemical shifts in these metallothioneins is consistent with the presence of two separate metal clusters, A and B, corresponding, respectively, to the alpha- and beta-domains, in the recombinant metallothionein. The one-dimensional 113Cd NMR spectra recorded on each of the three mutant metallothioneins, on the other hand, provide some indication as to the structural basis for the reduced, by one, metal stoichiometry of each of the mutant metallothioneins. For the C13Y mutant, it appears that the beta-domain now binds a total of two metal ions whereas with the C50Y mutant, the alpha-domain appears metal-deficient. For the double mutant, C13,50Y, the 113Cd resonances are indicative of major structural reorganizations in both domains.
利用酵母表达载体系统,我们在一种金属敏感酵母菌株中表达了野生型和六个突变的中国仓鼠金属硫蛋白编码序列,该酵母菌株的内源性金属硫蛋白基因已被删除。突变蛋白有单个或两个半胱氨酸被酪氨酸取代(C13Y、C50Y和C13,50Y)、单个半胱氨酸被丝氨酸取代(C13S和C50S),或单个半胱氨酸被丙氨酸取代(C50A)。这些蛋白在其酵母宿主中对镉解毒的功能程度不同。在第50位含有半胱氨酸突变的金属硫蛋白(C50Y、C50S、C50A和C13,50Y)赋予的镉抗性明显低于野生型金属硫蛋白,或在第13位含有单个半胱氨酸突变的金属硫蛋白(C13Y和C13S)。野生型和三种突变的中国仓鼠金属硫蛋白(C13Y、C50Y和C13,50Y)是从在亚毒性水平的CdCl2或113CdCl2中生长的酵母中纯化得到的。当测定金属结合化学计量时,所有三种突变蛋白结合的镉都比野生型蛋白少。将重组野生型中国仓鼠金属硫蛋白的一维113Cd NMR谱与天然大鼠和兔肝脏金属硫蛋白的谱进行了比较。这些金属硫蛋白中113Cd化学位移之间的密切对应与重组金属硫蛋白中存在两个单独的金属簇A和B一致,分别对应于α-和β-结构域。另一方面,记录的三种突变金属硫蛋白中每一种的一维113Cd NMR谱为每种突变金属硫蛋白减少一个的金属化学计量的结构基础提供了一些线索。对于C13Y突变体,似乎β-结构域现在总共结合两个金属离子,而对于C50Y突变体,α-结构域似乎缺乏金属。对于双突变体C13,50Y,113Cd共振表明两个结构域都有重大的结构重组。