首页> 外文OA文献 >Single-step purification of Proteus mirabilis urease accessory protein UreE, a protein with a naturally occurring histidine tail, by nickel chelate affinity chromatography.
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Single-step purification of Proteus mirabilis urease accessory protein UreE, a protein with a naturally occurring histidine tail, by nickel chelate affinity chromatography.

机译:通过镍螯合亲和色谱法一步一步纯化奇异变形杆菌尿素酶辅助蛋白UreE,该蛋白具有自然存在的组氨酸尾巴。

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摘要

Proteus mirabilis urease, a nickel metalloenzyme, is essential for the virulence of this species in the urinary tract. Escherichia coli containing cloned structural genes ureA, ureB, and ureC and accessory genes ureD, ureE, ureF, and ureG displays urease activity when cultured in M9 minimal medium. To study the involvement of one of these accessory genes in the synthesis of active urease, deletion mutations were constructed. Cultures of a ureE deletion mutant did not produce an active urease in minimal medium. Urease activity, however, was partially restored by the addition of 5 microM NiCl2 to the medium. The predicted amino acid sequence of UreE, which concludes with seven histidine residues among the last eight C-terminal residues (His-His-His-His-Asp-His-His-His), suggested that UreE may act as a Ni2+ chelator for the urease operon. To exploit this potential metal-binding motif, we attempted to purify UreE from cytoplasmic extracts of E. coli containing cloned urease genes. Soluble protein was loaded onto a nickel-nitrilotriacetic acid column, a metal chelate resin with high affinity for polyhistidine tails, and bound protein was eluted with a 0 to 0.5 M imidazole gradient. A single polypeptide of 20-kDa apparent molecular size, as shown by sodium dodecyl sulfate-10 to 20% polyacrylamide gel electrophoresis, was eluted between 0.25 and 0.4 M imidazole. The N-terminal 10 amino acids of the eluted polypeptide exactly matched the deduced amino acid sequence of P. mirabilis UreE. The molecular size of the native protein was estimated on a Superdex 75 column to be 36 kDa, suggesting that the protein is a dimer. These data suggest that UreE is a Ni(2)+-binding protein that is necessary for synthesis of a catalytically active urease at low Ni(2+) concentrations.
机译:奇异变形杆菌尿素酶(一种镍金属酶)对于该物种在尿道中的毒性至关重要。当在M9基本培养基中培养时,含有克隆的结构基因ureA,ureB和ureC以及辅助基因ureD,ureE,ureF和ureG的大肠杆菌显示脲酶活性。为了研究这些辅助基因之一参与活性脲酶的合成,构建了缺失突变。在基本培养基中,ureE缺失突变体的培养物未产生活性脲酶。但是,通过向培养基中添加5 microM NiCl2可以部分恢复脲酶活性。 UreE的预测氨基酸序列以最后八个C末端残基(His-His-His-His-Asp-His-His-His)中的七个组氨酸残基结尾,表明UreE可能充当Ni2 +螯合剂脲酶操纵子。为了利用这种潜在的金属结合基序,我们尝试从含有克隆的脲酶基因的大肠杆菌的细胞质提取物中纯化UreE。将可溶性蛋白上样至镍-三氟三乙酸镍色谱柱上,该色谱柱对聚组氨酸尾部具有高亲和力,并用0至0.5 M的咪唑梯度洗脱结合的蛋白。如十二烷基硫酸钠-10至20%聚丙烯酰胺凝胶电泳所示,表观分子大小为20-kDa的单个多肽在0.25至0.4 M咪唑之间洗脱。洗脱多肽的N端10个氨基酸与推定的奇异假单胞菌UreE的氨基酸序列完全匹配。天然蛋白质的分子大小在Superdex 75色谱柱上估计为36 kDa,表明该蛋白质是二聚体。这些数据表明,UreE是Ni(2)+结合蛋白,在低Ni(2+)浓度下合成催化活性脲酶是必需的。

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