Abstract

Bacteria live in capricious environments, in which they must continuously sense external conditions in order to adjust their shape, motility and physiology. The histidine-aspartate phosphorelay signal-transduction system (also known as the two-component system) is important in cellular adaptation to environmental changes in both prokaryotes and lower eukaryotes. In this system, protein histidine kinases function as sensors and signal transducers. The Escherichia coli osmosensor, EnvZ, is a transmembrane protein with histidine kinase activity in its cytoplasmic region. The cytoplasmic region contains two functional domains: domain A (residues 223-289) contains the conserved histidine residue (H243), a site of autophosphorylation as well as transphosphorylation to the conserved D55 residue of response regulator OmpR, whereas domain B (residues 290-450) encloses several highly conserved regions (G1, G2, F and N boxes) and is able to phosphorylate H243. Here we present the solution structure of domain B, the catalytic core of EnvZ. This core has a novel protein kinase structure, distinct from the serine/threonine/tyrosine kinase fold, with unanticipated similarities to both heatshock protein 90 and DNA gyrase B.

Keywords

AutophosphorylationHistidine kinaseResponse regulatorHAMP domainBiochemistryHistidineBiologyProtein kinase domainThreonineKinaseCell biologyTwo-component regulatory systemSignal transductionTransmembrane proteinPhosphorylationSerineProtein kinase ABinding siteAmino acidBinding domainMutant

MeSH Terms

Amino Acid SequenceBacterial Outer Membrane ProteinsCatalytic DomainCrystallographyX-RayEscherichia coliEscherichia coli ProteinsHistidine KinaseMagnetic Resonance SpectroscopyModelsMolecularMolecular Sequence DataMultienzyme ComplexesProtein ConformationProtein KinasesRecombinant Proteins

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Publication Info

Year
1998
Type
article
Volume
396
Issue
6706
Pages
88-92
Citations
258
Access
Closed

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Cite This

Toshiyuki Tanaka, Soumitra Kumar Saha, Chieri Tomomori et al. (1998). NMR structure of the histidine kinase domain of the E. coli osmosensor EnvZ. Nature , 396 (6706) , 88-92. https://doi.org/10.1038/23968

Identifiers

DOI
10.1038/23968
PMID
9817206

Data Quality

Data completeness: 86%