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Binding of Ni2+ to a histidine- and glutamine-rich protein, Hpn-like

机译:Ni2 +与富含组氨酸和谷氨酰胺的蛋白Hpn-like的结合

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Hpn-like (Hpnl) protein, encoded by the hpnl gene in Helicobacter pylori and featuring a histidine-rich and two glutamine-rich motifs, can render nickel tolerance to H. pylori when the external nickel level reaches toxic limits. We found that the recombinant Hpnl exists as an oligomer in the native state and binds to two molar equivalents of nickel ions per monomer with a dissociation constant of 3.8 mu M. Nickel could be released from Hpnl either at acidic pH (pH(1/2) 4.6) or in the presence of chelate ligands, such as EDTA (t (1/2) = 220, 355, and 716 min at pH 6.0, 7.0, and 7.5, respectively). Our combined spectroscopic data show that nickel ion coordinates to a nitrogen of a histidine residue possibly with a coordination number of four (square-planar geometry) or five. The growth of Escherichia coli cells with or without the hpnl gene implied a protective role of Hpnl under higher concentrations of external nickel ions. Hpnl may serve a role in binding/storage or detoxification of excess nickel ions.
机译:由幽门螺杆菌中的hpnl基因编码的Hpn样(Hpnl)蛋白具有丰富的组氨酸和两个丰富的谷氨酰胺基序,当外部镍水平达到毒性极限时,可以使镍对幽门螺杆菌具有耐受性。我们发现重组Hpnl以低聚物的形式存在于天然状态,并与两个摩尔当量的镍离子/单体结合,离解常数为3.8μM.在酸性pH(pH(1/2 4.6)或存在螯合配体的情况下,例如EDTA(在pH 6.0、7.0和7.5分别为t(1/2)= 220、355和716 min)。我们的综合光谱数据表明,镍离子与组氨酸残基的氮配位,其配位数可能为4(方形几何)或5。带有或不带有hpnl基因的大肠杆菌细胞的生长暗示了Hpnl在较高浓度的外部镍离子下具有保护作用。 HpnI可能在过量镍离子的结合/存储或解毒中起作用。

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