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PMID: 12218035 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Mutational analysis of the Escherichia coli PhoQ sensor kinase: differences with the Salmonella enterica serovar Typhimurium PhoQ protein and in the mechanism of Mg2+ and Ca2+ sensing.

Journal of bacteriology ·Vol. 184 ·No. 19 ·2002-10-00 ·Pages 5468-78

Regelmann AG, Lesley JA, Mott C, Stokes L, Waldburger CD

Abstract

The PhoP-PhoQ two-component system plays a role in Mg2+ homeostasis and/or the virulence properties of a number of bacterial species. A Salmonella enterica serovar Typhimurium PhoQ sensor kinase mutant, in which the threonine at residue 48 in the periplasmic sensor domain is changed to an isoleucine, was shown previously to result in elevated expression of PhoP-activated genes and to affect mouse virulence, epithelial cell invasion, and sensitivity to macrophage killing. We characterized a complete set of proteins having amino acid substitutions at position 48 in the closely related Escherichia coli PhoQ protein. Numerous mutant proteins having amino acid substitutions with side chains of various sizes and characters displayed signaling phenotypes similar to that of the wild-type protein, indicating that interactions mediated by the wild-type threonine side chain are not required for normal protein function. Changes to amino acids with aromatic side chains had little impact on signaling in response to extracellular Mg2+ but resulted in reduced sensitivity to extracellular Ca2+, suggesting that the mechanisms of signal transduction in response to these two divalent cations are different. Surprisingly, the Ile48 protein displayed a defective phenotype rather than the hyperactive phenotype seen with the S. enterica serovar Typhimurium protein. We also describe a mutant PhoQ protein lacking the extracellular sensor domain with a defect in the ability to activate PhoP. The defect does not appear to be due to reduced autokinase activity but rather appears to be due to an effect on the stability of the aspartyl-phosphate bond of phospho-PhoP.

MeSH Terms
Amino Acid Substitution Bacterial Proteins/chemistry,genetics,metabolism Calcium/metabolism DNA Mutational Analysis Escherichia coli/enzymology,genetics Gene Deletion Gene Expression Regulation, Bacterial Magnesium/metabolism Salmonella typhimurium/enzymology,genetics Signal Transduction
Chemicals
Bacterial Proteins PhoQ protein, Bacteria PhoP protein, Bacteria Magnesium Calcium
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Regelmann Adam G
Department of Microbiology, College of Physicians and Surgeons, Columbia University, New York, New York 10032, USA.
Lesley Joseph A
Mott Christina
Stokes Lissette
Waldburger Carey D
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Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
2002-10-00
Pages
5468-78
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC135348
Subset
IM
Grants
NIAID NIH HHS · AI41566 · United States
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