Characterization of Three New Competence-Regulated Operons in Haemophilus influenzae

Author:

VanWagoner Timothy M.12,Whitby Paul W.1,Morton Daniel J.1,Seale Thomas W.1,Stull Terrence L.13

Affiliation:

1. Departments of Pediatrics

2. Department of Botany and Microbiology, University of Oklahoma, Norman, Oklahoma

3. Microbiology/Immunology, University of Oklahoma Health Sciences Center, Oklahoma City

Abstract

ABSTRACT Haemophilus influenzae is one of a growing number of bacteria in which the natural ability to uptake exogenous DNA for potential genomic transformation has been recognized. To date, several operons involved in transformation in this organism have been described. These operons are characterized by a conserved 22-bp regulatory element upstream of the first gene and are induced coincident with transfer from rich to nutrient-depleted media. The previously identified operons comprised genes encoding proteins that include members of the type II secretion system and type IV pili, shown to be essential for transformation in other bacteria, and other proteins previously identified as required for transformation in H. influenzae . In the present study, three novel competence operons were identified by comparative genomics and transcriptional analysis. These operons have been further characterized by construction of null mutants and examination of the resulting transformation phenotypes. The putative protein encoded by the HI0366 gene was shown to be essential for DNA uptake, but not binding, and is homologous to a protein shown to be required for pilus biogenesis and twitching motility in Pseudomonas aeruginosa . An insertion in HI0939 abolished both DNA binding and uptake. The predicted product of this gene shares characteristics with PulJ, a pseudopilin involved in pullulanase export in Klebsiella oxytoca .

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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