首页> 外文期刊>Journal of bacteriology >Purification, characterization, and functional analysis of a truncated Klebsiella aerogenes UreE urease accessory protein lacking the histidine-rich carboxyl terminus.
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Purification, characterization, and functional analysis of a truncated Klebsiella aerogenes UreE urease accessory protein lacking the histidine-rich carboxyl terminus.

机译:缺少富含组氨酸的羧基末端的截短的产气克雷伯菌UreE脲酶辅助蛋白的纯化,鉴定和功能分析。

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Klebsiella aerogenes UreE, one of four accessory proteins involved in urease metallocenter assembly, contains a histidine-rich C terminus (10 of the last 15 residues) that is likely to participate in metal ion coordination by this nickel-binding protein. To study the function of the histidine-rich region in urease activation, ureE in the urease gene cluster was mutated to result in synthesis of a truncated peptide, H144* UreE, lacking the final 15 residues. Urease activity in cells containing H144* UreE approached the activities for cells possessing the wild-type protein at nickel ion concentrations ranging from 0 to 1 mM in both nutrient-rich and minimal media. In contrast, clear reductions in urease activities were observed when two ureE deletion mutant strains were examined, especially at lower nickel ion concentrations. Surprisingly, the H144* UreE, like the wild-type protein, was readily purified with a nickel-nitrilotriacetic acid resin. Denaturing polyacrylamide gel electrophoretic analysis and N-terminal sequencing confirmed that the protein was a truncated UreE. Size exclusion chromatography indicated that the H144* UreE peptide associated into a homodimer, as known for the wild-type protein. The truncated protein was shown to cooperatively bind 1.9 +/- 0.2 Ni(II) ions as assessed by equilibrium dialysis measurements, compared with the 6.05 +/- 0.25 Ni ions per dimer reported previously for the native protein. These results demonstrate that the histidine-rich motif is not essential to UreE function and is not solely responsible for UreE nickel-binding ability. Rather, we propose that internal nickel binding sites of UreE participate in urease metallocenter assembly.
机译:产气克雷伯氏菌UreE是参与脲酶金属中心组装的四个辅助蛋白之一,它含有一个富组氨酸的C末端(最后15个残基中的10个),可能通过这种镍结合蛋白参与金属离子的配位。为了研究富含组氨酸的区域在脲酶激活中的功能,对脲酶基因簇中的ureE进行了突变,以合成缺少最后15个残基的截短的肽H144 * UreE。含有H144 * UreE的细胞中的脲酶活性接近于在营养丰富和基本培养基中镍离子浓度为0到1 mM时具有野生型蛋白质的细胞的活性。相反,当检查两个ureE缺失突变株时,尤其是在较低的镍离子浓度下,观察到脲酶活性的明显降低。出乎意料的是,H144 * UreE像野生型蛋白一样,很容易用镍-三氮三乙酸树脂纯化。变性聚丙烯酰胺凝胶电泳分析和N端测序证实该蛋白是截短的UreE。尺寸排阻色谱法表明,H144 * UreE肽与同型二聚体缔合,这与野生型蛋白类似。如通过平衡透析测量所评估,截短的蛋白质显示出协同结合1.9 +/- 0.2 Ni(II)离子,而先前报道的天然蛋白质的每个二聚体为6.05 +/- 0.25 Ni离子。这些结果表明,富含组氨酸的基序对于UreE功能不是必需的,也不是唯一负责UreE镍结合能力的。相反,我们建议UreE的内部镍结合位点参与脲酶金属中心组装。

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