Characterization of a Ferrous Iron-Responsive Two-Component System in Nontypeable Haemophilus influenzae

Author:

Steele Kendra H.1,O'Connor Lauren H.1,Burpo Nicole1,Kohler Katharina1,Johnston Jason W.1

Affiliation:

1. Department of Microbiology, Immunology, and Molecular Genetics, University of Kentucky, Lexington, Kentucky, USA

Abstract

ABSTRACT Nontypeable Haemophilus influenzae (NTHI), an opportunistic pathogen that is commonly found in the human upper respiratory tract, has only four identified two-component signal transduction systems. One of these, an ortholog to the QseBC ( q uorum- s ensing E scherichia coli ) system, was characterized. This system, designated firRS , was found to be transcribed in an operon with a gene encoding a small, predicted periplasmic protein with an unknown function, ygiW . The ygiW-firRS operon exhibited a unique feature with an attenuator present between ygiW and firR that caused the ygiW transcript level to be 6-fold higher than the ygiW-firRS transcript level. FirRS induced expression of ygiW and firR , demonstrating that FirR is an autoactivator. Unlike the QseBC system of E. coli , FirRS does not respond to epinephrine or norepinephrine. FirRS signal transduction was stimulated when NTHI cultures were exposed to ferrous iron or zinc but was unresponsive to ferric iron. Notably, the ferrous iron-responsive activation only occurred when a putative iron-binding site in FirS and the key phosphorylation aspartate in FirR were intact. FirRS was also activated when cultures were exposed to cold shock. Mutants in ygiW , firR , and firS were attenuated during pulmonary infection, but not otitis media. These data demonstrate that the H. influenzae strain 2019 FirRS is a two-component regulatory system that senses ferrous iron and autoregulates its own operon.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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