Nickel-binding and accessory proteins facilitating Ni-enzyme maturation in Helicobacter pylori
- 5 January 2007
- journal article
- review article
- Published by Springer Nature in BioMetals
- Vol. 20 (3) , 655-664
- https://doi.org/10.1007/s10534-006-9061-8
Abstract
Helicobacter pylori colonizes the human gastric mucosa and this can lead to chronic gastritis, peptic and duodenal ulcers, and even gastric cancers. The bacterium colonizes over one-half of the worlds population. Nickel plays a major role in the bacteriums colonization and persistence attributes as two nickel enzyme sinks obligately contain the metal. Urease accounts for up to 10% of the total cellular protein made and is required for initial colonization processes, and the hydrogen oxidizing hydrogenase provides the bacterium a high-energy substrate yielding low potential electrons for energy generation. A battery of accessory proteins are needed for maturation or activation of each of the apoenzymes. These include Ni-chaperones and GTPases, some of which are unique to each Ni-enzyme and others that are individually required for maturation of both the Ni-enzymes. H. pylori’s need for some conventional hydrogenase maturation proteins playing roles in urease maturation may have to do with the poor nickel-sequestering ability of the UreE urease maturation protein compared to other systems. H. pylori also possesses a NixA nickel specific permease, a nickel dependent regulator (NikR), a recently identified nickel efflux system (CznABC), and a histidine-rich heat shock protein, HspA. Based on mutant analysis approaches all these proteins have roles in nickel homeostasis, in urease expression, and in host colonization. The His-rich putative nickel storage proteins Hpn and Hpn-like play roles in nickel detoxification and may influence the levels of Ni-activated urease that can be achieved.Keywords
This publication has 74 references indexed in Scilit:
- The Novel Helicobacter pylori CznABC Metal Efflux Pump Is Required for Cadmium, Zinc, and Nickel Resistance,Urease Modulation, and Gastric ColonizationInfection and Immunity, 2006
- Characterization of the ArsRS Regulon ofHelicobacter pylori, Involved in Acid AdaptationJournal of Bacteriology, 2006
- The Nickel Site of Bacillus pasteurii UreE, a Urease Metallo-Chaperone, As Revealed by Metal-Binding Studies and X-ray Absorption SpectroscopyBiochemistry, 2006
- Contribution of dppA to Urease Activity in Helicobacter pylori 26695Helicobacter, 2005
- Escherichia coli HypA Is a Zinc Metalloprotein with a Weak Affinity for NickelJournal of Bacteriology, 2005
- UreG, a Chaperone in the Urease Assembly Process, Is an Intrinsically Unstructured GTPase That Specifically Binds Zn2+Journal of Biological Chemistry, 2005
- The Complex Between Hydrogenase-maturation Proteins HypC and HypD is an Intermediate in the Supply of Cyanide to the Active Site Iron of [NiFe]-HydrogenasesJournal of Molecular Biology, 2004
- Genetic evidence for histidine kinase HP165 being an acid sensor of Helicobacter pyloriFEMS Microbiology Letters, 2004
- Crystal Structure of Klebsiella aerogenesUreE, a Nickel-binding Metallochaperone for Urease ActivationJournal of Biological Chemistry, 2001
- Specific nickel(II)-transfer process between the native sequence peptide representing the nickel(II)-transport site of human serum albumin and L-histidineJournal of Inorganic Biochemistry, 1992