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镍与NikA的结合:一个额外的结合位点使光谱学、量热法和晶体学结果相互吻合。

Nickel binding to NikA: an additional binding site reconciles spectroscopy, calorimetry and crystallography.

作者信息

Addy Christine, Ohara Masato, Kawai Fumihiro, Kidera Akinori, Ikeguchi Mitsunori, Fuchigami Sotaro, Osawa Masanori, Shimada Ichio, Park Sam-Yong, Tame Jeremy R H, Heddle Jonathan G

机构信息

Graduate School of Integrated Science, Yokohama City University, Tsurumi, Suehiro 1-7-29, Yokohama 230-0045, Japan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2007 Feb;63(Pt 2):221-9. doi: 10.1107/S0907444906048712. Epub 2007 Jan 16.

Abstract

Intracellular nickel is required by Escherichia coli as a cofactor for a number of enzymes and is necessary for anaerobic respiration. However, high concentrations of nickel are toxic, so both import and export systems have evolved to control the cellular level of the metal. The nik operon in E. coli encodes a nickel-uptake system that includes the periplasmic nickel-binding protein NikA. The crystal structures of wild-type NikA both bound to nickel and in the apo form have been solved previously. The liganded structure appeared to show an unusual interaction between the nickel and the protein in which no direct bonds are formed. The highly unusual nickel coordination suggested by the crystal structure contrasted strongly with earlier X-ray spectroscopic studies. The known nickel-binding site has been probed by extensive mutagenesis and isothermal titration calorimetry and it has been found that even large numbers of disruptive mutations appear to have little effect on the nickel affinity. The crystal structure of a binding-site mutant with nickel bound has been solved and it is found that nickel is bound to two histidine residues at a position distant from the previously characterized binding site. This novel site immediately resolves the conflict between the crystal structures and other biophysical analyses. The physiological relevance of the two binding sites is discussed.

摘要

大肠杆菌需要细胞内的镍作为多种酶的辅助因子,并且对于无氧呼吸是必需的。然而,高浓度的镍具有毒性,因此进化出了导入和输出系统来控制细胞内金属的水平。大肠杆菌中的nik操纵子编码一种镍摄取系统,该系统包括周质镍结合蛋白NikA。野生型NikA与镍结合以及脱辅基形式的晶体结构先前已得到解析。配体化结构似乎显示出镍与蛋白质之间存在异常相互作用,其中没有形成直接键。晶体结构所显示的高度异常的镍配位与早期的X射线光谱研究形成了强烈对比。通过广泛的诱变和等温滴定量热法对已知的镍结合位点进行了探测,发现即使大量的破坏性突变似乎对镍亲和力也几乎没有影响。已解析了结合镍的结合位点突变体的晶体结构,发现镍在远离先前表征的结合位点的位置与两个组氨酸残基结合。这个新位点立即解决了晶体结构与其他生物物理分析之间的冲突。讨论了两个结合位点的生理相关性。

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