Narula S S, Winge D R, Armitage I M
Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06510.
Biochemistry. 1993 Jul 6;32(26):6773-87. doi: 10.1021/bi00077a032.
Complete 1H NMR sequential assignments have been made for copper(I)- and silver (I)-substituted metallothionein (MT) from Saccharomyces cerevisiae using standard 2D 1H NMR methods. The fingerprint region of the COSY spectrum of both metalloproteins shows a doubling of a few backbone proton resonances from residue K41 onward in the C terminus. This doubling of resonances is absent in the spectrum of the truncated mutant protein that lacks the five C-terminal residues which includes two cysteines. Concurrently, it has been established from a comparison of the heteronuclear 1H-109 Ag multiple-quantum coherence transfer (HMQC) spectrum on the silver-substituted mutant and the wild-type protein that metal ligation is similar in both molecules. Thus, the 2 C-terminal Cys are not essential for metal cluster formation in the wild-type yeast MT and only 10 of the 12 Cys present in this protein appear to be involved in ligating the 7 mol of bound metal ions. A qualitative analysis of the coupling constant, hydrogen exchange, and NOE data indicates the presence of many type I beta-turns and the lack of any other regular secondary structural elements. A comparison of chemical shifts and NOE data for native copper- and silver-substituted yeast MT indicates a high degree of conservation of structural elements in both proteins. Therefore, it seems reasonable to conclude that the metal to Cys connectivities which are obtained directly from the HMQC data on silver-substituted metallothionein are conserved in the native copper protein. Interestingly, a mixture of both 2 and 3 coordination was found for the bound Ag(I) ions in a single Ag7Cys10 cluster. This mixed coordination number and a single cluster arrangement is most probably also shared with the Cu(I) ion coordination in the native protein.
利用标准二维¹H NMR方法,已完成对酿酒酵母中铜(I)和银(I)取代的金属硫蛋白(MT)的¹H NMR序列归属。两种金属蛋白的COSY谱指纹区显示,从C端的K41残基开始,一些主链质子共振峰出现了双峰。在缺少包括两个半胱氨酸在内的五个C端残基的截短突变蛋白的谱图中,这种共振峰的双峰现象不存在。同时,通过比较银取代突变体和野生型蛋白的异核¹H-¹⁰⁹Ag多量子相干转移(HMQC)谱发现,两种分子中的金属配位相似。因此,野生型酵母MT中C端的2个半胱氨酸对于金属簇的形成并非必需,该蛋白中12个半胱氨酸中只有10个似乎参与了7摩尔结合金属离子的配位。对耦合常数、氢交换和NOE数据的定性分析表明,存在许多I型β-转角,且缺乏任何其他规则的二级结构元件。对天然铜和银取代的酵母MT的化学位移和NOE数据进行比较表明,两种蛋白的结构元件具有高度保守性。因此,可以合理地得出结论,直接从银取代金属硫蛋白的HMQC数据获得的金属与半胱氨酸的连接性在天然铜蛋白中是保守的。有趣的是,在单个Ag₇Cys₁₀簇中,发现结合的Ag(I)离子存在2配位和3配位的混合物。这种混合配位数和单簇排列很可能也与天然蛋白中Cu(I)离子的配位情况相同。