Lee M H, Pankratz H S, Wang S, Scott R A, Finnegan M G, Johnson M K, Ippolito J A, Christianson D W, Hausinger R P
Department of Microbiology, Michigan State University, East Lansing 48824-1101.
Protein Sci. 1993 Jun;2(6):1042-52. doi: 10.1002/pro.5560020617.
The Klebsiella aerogenes ureE gene product was previously shown to facilitate assembly of the urease metallocenter (Lee, M.H., et al., 1992, J. Bacteriol. 174, 4324-4330). UreE protein has now been purified and characterized. Although it behaves as a soluble protein, UreE is predicted to possess an amphipathic beta-strand and exhibits unusually tight binding to phenyl-Sepharose resin. Immunogold electron microscopic studies confirm that UreE is a cytoplasmic protein. Each dimeric UreE molecule (M(r) = 35,000) binds 6.05 + 0.25 nickel ions (Kd of 9.6 +/- 1.3 microM) with high specificity according to equilibrium dialysis measurements. The nickel site in UreE was probed by X-ray absorption and variable-temperature magnetic circular dichroism spectroscopies. The data are most consistent with the presence of Ni(II) in pseudo-octahedral geometry with 3-5 histidyl imidazole ligands. The remaining ligands are nitrogen or oxygen donors. UreE apoprotein has been crystallized and analyzed by X-ray diffraction methods. Addition of nickel ion to apoprotein crystals leads to the development of fractures, consistent with a conformational change upon binding nickel ion. We hypothesize that UreE binds intracellular nickel ion and functions as a nickel donor during metallocenter assembly into the urease apoprotein.
产气克雷伯菌ureE基因产物先前已被证明有助于脲酶金属中心的组装(Lee,M.H.等人,1992年,《细菌学杂志》174卷,4324 - 4330页)。现在已对UreE蛋白进行了纯化和特性分析。尽管UreE表现为可溶性蛋白,但预计它具有一条两亲性β链,并且与苯基 - 琼脂糖树脂表现出异常紧密的结合。免疫金电子显微镜研究证实UreE是一种细胞质蛋白。根据平衡透析测量,每个二聚体UreE分子(相对分子质量 = 35,000)以高特异性结合6.05 ± 0.25个镍离子(解离常数为9.6 ± 1.3微摩尔)。通过X射线吸收和变温磁圆二色光谱对UreE中的镍位点进行了探测。数据与存在具有3 - 5个组氨酸咪唑配体的伪八面体几何结构的Ni(II)最为一致。其余配体为氮或氧供体。UreE脱辅基蛋白已被结晶并通过X射线衍射方法进行分析。向脱辅基蛋白晶体中添加镍离子会导致出现裂缝,这与结合镍离子时的构象变化一致。我们推测UreE结合细胞内镍离子,并在金属中心组装到脲酶脱辅基蛋白的过程中作为镍供体发挥作用。