Boulanger Y, Goodman C M, Forte C P, Fesik S W, Armitage I M
Proc Natl Acad Sci U S A. 1983 Mar;80(6):1501-5. doi: 10.1073/pnas.80.6.1501.
The results of physicochemical studies of mammalian metallothioneins are summarized and used to propose a model of the protein. The primary structures of all mammalian metallothioneins are very homologous; there are 38 invariant residues and 20 of them are cysteines. The results of UV and CD optical studies indicated that all 20 cysteines are involved in the ligation of 7 mol of metal per mol of metallothionein and that the protein does not contain any alpha-helix structure. A theoretical analysis by the Chou-Fasman method has predicted 11 beta-bends, each one involving at least one cysteine residue. The most significant structural data, provided by 113Cd NMR, demonstrated that the 7 mol of bound Cd2+ are arranged in two separate metal clusters, one containing four metal ions and the other containing three, with all Cd2+ tetrahedrally coordinated to cysteine thiolate ligands. The 11 cysteine residues of the carboxyl-terminal portion of the metallothionein chain (residues 30-61) are ligated to the 4-metal cluster as shown by 113Cd NMR of this enzymatically cleaved fragment. The remaining cysteine residues from the amino-terminal polypeptide portion (residues 1-29) form the 3-metal cluster. Such a division of the chain is consistent with the presence of an intron in the mouse metallothionein-1 gene corresponding to residue 32 in the polypeptide chain. A two-domain molecular model has been constructed based on an analysis of all the available data and is described in detail. The accuracy of this model was tested by 1H NMR at 500 MHz and the data are in agreement with our proposed structure.
总结了哺乳动物金属硫蛋白的物理化学研究结果,并据此提出了该蛋白质的模型。所有哺乳动物金属硫蛋白的一级结构都非常同源;有38个不变残基,其中20个是半胱氨酸。紫外和圆二色光谱研究结果表明,每摩尔金属硫蛋白中的20个半胱氨酸全部参与了7摩尔金属的配位,且该蛋白质不包含任何α-螺旋结构。用Chou-Fasman方法进行的理论分析预测有11个β-转角,每个β-转角至少涉及一个半胱氨酸残基。113Cd NMR提供的最重要的结构数据表明,结合的7摩尔Cd2+排列在两个独立的金属簇中,一个包含四个金属离子,另一个包含三个金属离子,所有Cd2+均与半胱氨酸硫醇盐配体呈四面体配位。金属硫蛋白链羧基末端部分(残基30 - 61)的11个半胱氨酸残基与4-金属簇配位,这一点通过该酶切片段的113Cd NMR得以证实。来自氨基末端多肽部分(残基1 - 29)的其余半胱氨酸残基形成3-金属簇。这种链的划分与小鼠金属硫蛋白-1基因中对应于多肽链中残基32处的一个内含子的存在是一致的。基于对所有现有数据的分析构建了一个两结构域分子模型,并进行了详细描述。该模型的准确性通过500 MHz的1H NMR进行了测试,数据与我们提出的结构一致。