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首页> 外文期刊>The Biochemical Journal >Expression and characterization of a histidine-rich protein, Hpn: potential for Ni2+ storage in Helicohacter pylori
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Expression and characterization of a histidine-rich protein, Hpn: potential for Ni2+ storage in Helicohacter pylori

机译:富含组氨酸的蛋白Hpn的表达与表征:幽门螺旋杆菌中Ni2 +的储存潜力

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摘要

Hpn is a small cytoplasmic protein found in Helicobacter pylori, which binds Ni2+ ions with moderate affinity. Consisting of 60 amino acids, the protein is rich in histidine (28 residues, 46.7%) as well as glutamate, glycine and serine residues (in total 31.7%) and contains short repeating motifs. In the present study, we report the detailed biophysical characterization of the multimeric status and Ni2+-binding properties of purified recombinant Hpn under physiologically relevant conditions. The protein exists as an equilibration of multimeric forms in solution, with 20-mers (approx. 136 kDa) being the predominant species. Using equilibrium dialysis, ICP-MS (inductively coupled plasma MS) and UV/visible spectroscopy, Hpn was found to bind five Ni2+ ions per monomer at pH 7.4, with a dissociation constant (K-d) of 7.1 mu M. Importantly, Ni2+ binding to Hpn is reversible: metal is released either in the presence of a chelating ligand such as EDTA, or at a slightly acidic pH (pH for half dissociation, pH(1/2) similar to 6.3). Ni2+ binding induces conformational changes within the protein, increasing beta-sheet and reducing alpha-helical content, from 22% to 37%, and 20% to 10% respectively. Growth curves of Escherichia coli BL21 (DE3) both with and without the hpn gene performed under Ni2+ pressure clearly implied a role for Hpn to protect the cells from higher concentrations of external metal ions. Similarly, the accumulation of Ni2+ in these cells expressing Hpn from a plasmid was approx. 4-fold higher than in uninduced controls or control cultures that lacked the plasmid. Similarly, levels of Ni2+ in wild-type H. pylori 26695 cells were higher than those in H. pylori hpn-deletion mutant strains. Hpn may potentially serve multiple roles inside the bacterium: storage of Ni2+ ions in a 'reservoir'; donation of Ni2+ to other proteins; and detoxification via sequestration of excess Ni2+.
机译:Hpn是一种在幽门螺杆菌中发现的小胞质蛋白,它以适度的亲和力结合Ni2 +离子。该蛋白质由60个氨基酸组成,富含组氨酸(28个残基,占46.7%)以及谷氨酸,甘氨酸和丝氨酸残基(合计31.7%),并包含短的重复基序。在本研究中,我们报告了在生理相关条件下纯化的重组Hpn的多聚体状态和Ni2 +结合特性的详细生物物理特征。该蛋白质以溶液中多聚体形式的平衡形式存在,其中主要有20个聚体(约136 kDa)。使用平衡透析,ICP-MS(电感耦合等离子体质谱)和UV /可见光谱,发现Hpn在pH 7.4时每个单体结合五个Ni2 +离子,解离常数(Kd)为7.1μM。重要的是,Ni2 +与Hpn是可逆的:金属在螯合配体(如EDTA)存在下或在弱酸性pH(半解离的pH,pH(1/2)类似于6.3)下释放。 Ni2 +结合诱导蛋白质内的构象变化,增加β-折叠和降低α-螺旋含量,分别从22%到37%和20%到10%。带有和不带有hpn基因的大肠杆菌BL21(DE3)在Ni2 +压力下的生长曲线清楚地暗示了Hpn可以保护细胞免受更高浓度的外部金属离子的作用。同样,在这些从质粒表达Hpn的细胞中,Ni2 +的蓄积量约为1。比未诱导的对照或缺少质粒的对照培养物高4倍。同样,野生型幽门螺杆菌26695细胞中的Ni2 +水平高于幽门螺杆菌hpn-缺失突变株。 Hpn可能在细菌内部发挥多种作用:将Ni2 +离子存储在“储存器”中;将Ni2 +捐赠给其他蛋白质;通过隔离过量的Ni2 +进行排毒。

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