ABSTRACT Campylobacter jejuni is a leading cause of bacterially derived gastroenteritis. A previous mutant screen demonstrated that the heme uptake system (Chu) is required for full colonization of the chicken gastrointestinal tract. Subsequent work identified a PAS domain-containing regulator, termed HeuR, as being required for chicken colonization. Here we confirm that both the heme uptake system and HeuR are required for full chicken gastrointestinal tract colonization, with the heuR mutant being particularly affected during competition with wild-type C. jejuni. Transcriptomic analysis identified the chu genes—and those encoding other iron uptake systems—as regulatory targets of HeuR. Purified HeuR bound the chuZA promoter region in elec...
The metal iron is a limiting nutrient for bacteria during infection. Bacillus anthracis, the causati...
Acquisition of iron contributes to bacterial pathogenesis. In C. jejuni, there are more than five sy...
Chemotaxis-mediated motility enables Campylobacter jejuni to navigate through complex environmental ...
Campylobacter jejuni is a leading cause of bacterially derived gastroenteritis. A previous mutant sc...
Campylobacter jejuni is a pathogenic bacterium that causes gastroenteritis in humans yet is a widesp...
ABSTRACT Campylobacter jejuni is a pathogenic bacterium that causes gastroenteritis in humans yet is...
Campylobacter jejuni (C. jejuni), a zoonotic commensal that is pathogenic in humans, is one of the m...
Chemotaxis-mediated motility enables Campylobacter jejuni to navigate through complex environmental ...
The ability of pathogenic organisms to obtain iron in the host is critical for pathogenesis. Limited...
C. jejuni is the major cause of human gastroenteritis worldwide (including industrialized nations) ...
A putative iron- and Fur-regulated hemin uptake gene cluster, composed of the transport genes chuABC...
Campylobacter jejuni is a zoonotic pathogen and the most common cause of bacterial foodborne diarrho...
Iron affects the physiology of bacteria in two different ways: as a micronutrient for bacterial grow...
Given the small size of the genome of Campylobacter jejuni, a surprisingly large number of its genes...
Abstract Background Iron is recognized as an important trace element, essential for most organisms i...
The metal iron is a limiting nutrient for bacteria during infection. Bacillus anthracis, the causati...
Acquisition of iron contributes to bacterial pathogenesis. In C. jejuni, there are more than five sy...
Chemotaxis-mediated motility enables Campylobacter jejuni to navigate through complex environmental ...
Campylobacter jejuni is a leading cause of bacterially derived gastroenteritis. A previous mutant sc...
Campylobacter jejuni is a pathogenic bacterium that causes gastroenteritis in humans yet is a widesp...
ABSTRACT Campylobacter jejuni is a pathogenic bacterium that causes gastroenteritis in humans yet is...
Campylobacter jejuni (C. jejuni), a zoonotic commensal that is pathogenic in humans, is one of the m...
Chemotaxis-mediated motility enables Campylobacter jejuni to navigate through complex environmental ...
The ability of pathogenic organisms to obtain iron in the host is critical for pathogenesis. Limited...
C. jejuni is the major cause of human gastroenteritis worldwide (including industrialized nations) ...
A putative iron- and Fur-regulated hemin uptake gene cluster, composed of the transport genes chuABC...
Campylobacter jejuni is a zoonotic pathogen and the most common cause of bacterial foodborne diarrho...
Iron affects the physiology of bacteria in two different ways: as a micronutrient for bacterial grow...
Given the small size of the genome of Campylobacter jejuni, a surprisingly large number of its genes...
Abstract Background Iron is recognized as an important trace element, essential for most organisms i...
The metal iron is a limiting nutrient for bacteria during infection. Bacillus anthracis, the causati...
Acquisition of iron contributes to bacterial pathogenesis. In C. jejuni, there are more than five sy...
Chemotaxis-mediated motility enables Campylobacter jejuni to navigate through complex environmental ...