Kurasaki M, Emoto T, Arias A R, Okabe M, Yamasaki F, Oikawa S, Kojima Y
Department of Environmental Medicine and Informatics, Graduate School of Environmental Earth Science, Hokkaido University, Sapporo, Japan.
Protein Eng. 1996 Dec;9(12):1173-80. doi: 10.1093/protein/9.12.1173.
We examined the independent self-assembly of the alpha- and beta-fragments of human metallothionein (MT) into cadmium-binding conformation in an Escherichia coli expression system, in addition to wild-type MT expression. The expressed alpha-fragment formed independently the structure of a metal-binding cluster without the aid of the beta-fragment. The alpha-fragment and wild-type MT expressed in E.coli were purified and analyzed for their biochemical and spectroscopic properties. The apparent cadmium binding of the alpha-fragment was approximately 12-fold greater than that for the wild-type MT, whereas in other respects the studied biochemical properties were similar. In contrast, we were unable to obtain any independently expressed beta-fragment as the cadmium-binding form in this study. Possible explanations for this phenomenon are discussed.
除了野生型金属硫蛋白(MT)的表达外,我们还在大肠杆菌表达系统中研究了人金属硫蛋白的α片段和β片段独立自组装成镉结合构象的情况。表达的α片段在没有β片段帮助的情况下独立形成了金属结合簇的结构。对在大肠杆菌中表达的α片段和野生型MT进行了纯化,并分析了它们的生化和光谱性质。α片段的表观镉结合能力比野生型MT大约高12倍,而在其他方面,所研究的生化性质相似。相比之下,在本研究中我们无法获得任何以镉结合形式独立表达的β片段。讨论了这种现象的可能解释。