Otvos J D, Engeseth H R, Wehrli S
Biochemistry. 1985 Nov 19;24(24):6735-40. doi: 10.1021/bi00345a001.
113Cd NMR analysis of rabbit liver metallothionein 2 reconstituted with 113Cd at all seven binding sites has previously indicated that the metals are arranged in two metal-thiolate clusters [Otvos, J.D., & Armitage, I.M. (1980) Proc. Natl. Acad. Sci. U.S.A. 77, 7094-7098]. Spectra of the protein always contained more than seven resonances, however, suggesting the samples were in some way heterogeneous. Results of a recent study of 113Cd metallothionein reconstituted in a different manner but also giving spectra with more than seven resonances have been interpreted as arguing against the two-cluster model of metal binding and in favor of a model in which structural flexibility of the protein allows many configurational substates of the cluster(s) to coexist [Vasak, M., Hawkes, G.E., Nicholson, J.K., & Sadler, P.J. (1985) Biochemistry 24, 740-747]. Data are presented here that indicate that dimers and larger oligomers of metallothionein formed as byproducts of metal reconstitution are the likely source of at least some of the 113Cd resonances attributed by these workers to configurational substrates. Removal of the contaminating oligomers by gel filtration yields a verifiably homogeneous protein whose 113Cd spectrum consists of seven resonances of comparable intensity. Unambiguous confirmation of the existence and structures of the two previously proposed metal-thiolate clusters was obtained by two-dimensional chemical shift correlation spectroscopy and spectral simulation of the 113Cd-113Cd splitting patterns of the individual resonances.
先前对兔肝脏金属硫蛋白2在其所有七个结合位点用¹¹³Cd重构后的¹¹³Cd核磁共振分析表明,金属排列成两个金属硫醇盐簇[奥沃斯,J.D.,& 阿米蒂奇,I.M.(1980年)《美国国家科学院院刊》77,7094 - 7098]。然而,该蛋白质的光谱总是包含超过七个共振峰,这表明样品在某种程度上是异质的。最近一项对以不同方式重构的¹¹³Cd金属硫蛋白的研究结果也给出了具有超过七个共振峰的光谱,这些结果被解释为反对金属结合的双簇模型,而支持一种模型,即蛋白质的结构灵活性允许簇的许多构型亚态共存[瓦萨克,M.,霍克斯,G.E.,尼科尔森,J.K.,& 萨德勒,P.J.(1985年)《生物化学》24,740 - 747]。此处给出的数据表明,作为金属重构副产物形成的金属硫蛋白二聚体和更大的寡聚体可能是这些研究人员归因于构型底物的至少一些¹¹³Cd共振峰的来源。通过凝胶过滤去除污染的寡聚体后得到了一种可验证的均一蛋白质,其¹¹³Cd光谱由七个强度相当的共振峰组成。通过二维化学位移相关光谱和对各个共振峰的¹¹³Cd - ¹¹³Cd分裂模式进行光谱模拟,明确证实了先前提出的两个金属硫醇盐簇的存在和结构。