首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Relationship between Ni(II) and Zn(II) Coordination and Nucleotide Binding by the Helicobacter pylori NiFe-Hydrogenase and Urease Maturation Factor HypB
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Relationship between Ni(II) and Zn(II) Coordination and Nucleotide Binding by the Helicobacter pylori NiFe-Hydrogenase and Urease Maturation Factor HypB

机译:幽门螺杆菌NiFe-加氢酶和脲酶成熟因子HypB与Ni(II)和Zn(II)配位与核苷酸结合的关系

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摘要

The pathogen Helicobacter pylori requires two nickel-containing enzymes, urease and [NiFe]-hydrogenase, for efficient colonization of the human gastric mucosa. These enzymes possess complex metallocenters that are assembled by teams of proteins in multistep pathways. One essential accessory protein is the GTPase HypB, which is required for Ni(II) delivery to [NiFe]-hydrogenase and participates in urease maturation. Ni(II) or Zn(II) binding to a site embedded in the GTPase domain of HypB modulates the enzymatic activity, suggesting a mechanism of regulation. In this study, biochemical and structural analyses of H. pylori HypB (HpHypB) revealed an intricate link between nucleotide and metal binding. HpHypB nickel coordination, stoichiometry, and affinity were modulated by GTP and GDP, an effect not observed for zinc, and biochemical evidence suggests that His-107 coordination to nickel toggles on and off in a nucleotide-dependent manner. These results are consistent with the crystal structure of HpHypB loaded with Ni(II), GDP, and Pi, which reveals a nickel site distinct from that of zinc-loaded Methanocaldococcus jannaschii HypB as well as subtle changes to the protein structure. Furthermore, Cys-142, a metal ligand from the Switch II GTPase motif, was identified as a key component of the signal transduction between metal binding and the enzymatic activity. Finally, potassium accelerated the enzymatic activity of HpHypB but had no effect on the other biochemical properties of the protein. Altogether, this molecular level information about HpHypB provides insight into its cellular function and illuminates a possible mechanism of metal ion discrimination.
机译:病原体幽门螺杆菌需要两种含镍的酶,脲酶和[NiFe]-氢化酶,以有效地定居人胃粘膜。这些酶具有复杂的金属中心,这些金属中心由蛋白质团队以多步途径组装而成。一种基本的辅助蛋白是GTPase HypB,它是Ni(II)传递到[NiFe]-氢化酶所必需的,并参与尿素酶的成熟。与嵌入HypB的GTPase结构域中的位点结合的Ni(II)或Zn(II)调节酶活性,提示调节机制。在这项研究中,幽门螺杆菌HypB(HpHypB)的生化和结构分析揭示了核苷酸与金属结合之间的复杂联系。 HpHypB镍的配位,化学计量和亲和力受GTP和GDP调节,对锌没有观察到这种作用,生化证据表明,His-107与镍的配位以核苷酸依赖性方式开启和关闭。这些结果与负载Ni(II),GDP和Pi的HpHypB的晶体结构一致,该结构揭示了一个镍位点不同于锌负载的甲烷甲烷球菌HypB的镍位点以及蛋白质结构的细微变化。此外,Cys-142(来自Switch II GTPase基序的金属配体)被确定为金属结合与酶促活性之间信号转导的关键成分。最后,钾促进了HpHypB的酶活性,但对蛋白质的其他生化特性没有影响。总之,有关HpHypB的这种分子水平信息提供了对其细胞功能的深入了解,并阐明了金属离子区分的可能机制。

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