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Mua (HP0868) Is a Nickel-Binding Protein That Modulates Urease Activity in Helicobacter pylori

机译:Mua(HP0868)是一种镍结合蛋白可调节幽门螺杆菌中的脲酶活性

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摘要

A novel mechanism aimed at controlling urease expression in Helicobacter pylori in the presence of ample nickel is described. Higher urease activities were observed in an hp0868 mutant (than in the wild type) in cells supplemented with nickel, suggesting that the HP0868 protein (herein named Mua for modulator of urease activity) represses urease activity when nickel concentrations are ample. The increase in urease activity in the Δmua mutant was linked to an increase in urease transcription and synthesis, as shown by quantitative real-time PCR, SDS-PAGE, and immunoblotting against UreAB. Increased urease synthesis was also detected in a Δmua ΔnikR double mutant strain. The Δmua mutant was more sensitive to nickel toxicity but more resistant to acid challenge than was the wild-type strain. Pure Mua protein binds 2 moles of Ni2+ per mole of dimer. Electrophoretic mobility shift assays did not reveal any binding of Mua to the ureA promoter or other selected promoters (nikR, arsRS, 5′ ureB-sRNAp). Previous yeast two-hybrid studies indicated that Mua and RpoD may interact; however, only a weak interaction was detected via cross-linking with pure components and this could not be verified by another approach. There was no significant difference in the intracellular nickel level between wild-type and mua mutant cells. Taken together, our results suggest the HP0868 gene product represses urease transcription when nickel levels are high through an as-yet-uncharacterized mechanism, thus counterbalancing the well-described NikR-mediated activation.
机译:描述了一种新颖的机制,该机制旨在在充足的镍存在下控制幽门螺杆菌中脲酶的表达。在添加了镍的细胞中,在hp0868突变体(与野生型相比)中观察到更高的脲酶活性,这表明当镍浓度足够时,HP0868蛋白(在此称为Mua,可调节脲酶活性)可抑制脲酶活性。 Δmua突变体中脲酶活性的增加与脲酶转录和合成的增加有关,如实时定量PCR,SDS-PAGE和针对UreAB的免疫印迹所示。在ΔmuaΔnikR双突变株中也检测到脲酶合成增加。与野生型菌株相比,Δmua突变体对镍的毒性更敏感,但对酸挑战的抵抗力更强。每摩尔二聚体纯Mua蛋白结合2摩尔Ni 2 + 。电泳迁移率变动分析未显示Mua与ureA启动子或其他选定启动子(nikR,arsRS,5'ureB-sRNAp)的任何结合。先前的酵母两杂交研究表明,Mua和RpoD可能相互作用。但是,通过与纯组分的交联仅检测到弱相互作用,而这不能通过另一种方法进行验证。野生型和mua突变细胞之间的细胞内镍水平没有显着差异。两者合计,我们的结果表明,当镍水平很高时,HP0868基因产物会通过尚未阐明的机制抑制尿素酶的转录,从而抵消了众所周知的NikR介导的激活。

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