نتایج جستجو برای: FeoB

تعداد نتایج: 101  

Journal: :Infection and immunity 2006
Hemant Naikare Kiran Palyada Roger Panciera Denver Marlow Alain Stintzi

To assess the importance of ferrous iron acquisition in Campylobacter physiology and pathogenesis, we disrupted and characterized the Fe2+ iron transporter, FeoB, in Campylobacter jejuni NCTC 11168, 81-176, and ATCC 43431. The feoB mutant was significantly affected in its ability to transport 55Fe2+. It accumulated half the amount of iron than the wild-type strain during growth in an iron-conta...

Journal: :Frontiers in microbiology 2015
Shingo Kato Moriya Ohkuma Deborah H. Powell Sean T. Krepski Kenshiro Oshima Masahira Hattori Nicole Shapiro Tanja Woyke Clara S. Chan

Neutrophilic microaerophilic iron-oxidizing bacteria (FeOB) are thought to play a significant role in cycling of carbon, iron and associated elements in both freshwater and marine iron-rich environments. However, the roles of the neutrophilic microaerophilic FeOB are still poorly understood due largely to the difficulty of cultivation and lack of functional gene markers. Here, we analyze the ge...

Journal: :Infection and immunity 2002
Marianne Robey Nicholas P Cianciotto

In order to determine the role of ferrous iron transport in Legionella pathogenesis, we identified and mutated the feoB gene in virulent Legionella pneumophila strain 130b. As it is in Escherichia coli, the L. pneumophila feoB gene was contained within a putative feoAB operon. L. pneumophila feoB insertion mutants exhibited decreased ferrous but not ferric iron uptake compared to the wild type....

Journal: :Journal of bacteriology 2013
Hyunkeun Kim Hwiseop Lee Dongwoo Shin

In the gammaproteobacteria, the FeoA, FeoB, and FeoC proteins constitute the Feo system, which mediates ferrous iron [Fe(II)] import. Of these Feo proteins, FeoB is an inner membrane Fe(II) transporter that is aided by the small protein FeoA. However, the role of another small protein, FeoC, has remained unknown. Here we report that the FeoC protein is necessary for FeoB protein-mediated Fe(II)...

Journal: :Journal of bacteriology 2016
Begoña Stevenson Elizabeth E Wyckoff Shelley M Payne

UNLABELLED Feo is the major ferrous iron transport system in prokaryotes. Despite having been discovered over 25 years ago and found to be widely distributed among bacteria, Feo is poorly understood, as its structure and mechanism of iron transport have not been determined. The feo operon in Vibrio cholerae is made up of three genes, encoding the FeoA, FeoB, and FeoC proteins, which are all req...

2016
Saeed Seyedmohammad Natalia Alveal Fuentealba Robert A.J. Marriott Tom A. Goetze J. Michael Edwardson Nelson P. Barrera Henrietta Venter

Iron is essential for the survival and virulence of pathogenic bacteria. The FeoB transporter allows the bacterial cell to acquire ferrous iron from its environment, making it an excellent drug target in intractable pathogens. The protein consists of an N-terminal GTP-binding domain and a C-terminal membrane domain. Despite the availability of X-ray crystal structures of the N-terminal domain, ...

Journal: :Journal of bacteriology 2015
Hyunkeun Kim Hwiseop Lee Dongwoo Shin

The Salmonella Feo system consists of the FeoA, FeoB, and FeoC proteins and mediates ferrous iron [Fe(II)] import. FeoB is an inner membrane protein that, along with contributions from two small hydrophilic proteins, FeoA and FeoC, transports Fe(II). We previously reported that FeoC binds to and protects the FeoB transporter from FtsH-mediated proteolysis. In the present study, we report proteo...

2017
Shaomei He Roman A. Barco David Emerson Eric E. Roden

Extracellular electron transfer (EET) is recognized as a key biochemical process in circumneutral pH Fe(II)-oxidizing bacteria (FeOB). In this study, we searched for candidate EET genes in 73 neutrophilic FeOB genomes, among which 43 genomes are complete or close-to-complete and the rest have estimated genome completeness ranging from 5 to 91%. These neutrophilic FeOB span members of the microa...

Journal: :Applied and environmental microbiology 2011
Joyce M McBeth Brenda J Little Richard I Ray Katherine M Farrar David Emerson

Microbiologically influenced corrosion (MIC) of mild steel in seawater is an expensive and enduring problem. Little attention has been paid to the role of neutrophilic, lithotrophic, iron-oxidizing bacteria (FeOB) in MIC. The goal of this study was to determine if marine FeOB related to Mariprofundus are involved in this process. To examine this, field incubations and laboratory microcosm exper...

2012
Juanjuan Wang Sascha Krause Gerard Muyzer Marion Meima-Franke Hendrikus J. Laanbroek Paul L. E. Bodelier

Iron- and methane-cycling are important processes in wetlands with one connected to plant growth and the other to greenhouse gas emission, respectively. In contrast to acidic habitats, there is scarce information on the ecology of microbes oxidizing ferrous iron at circumneutral pH. The latter is mainly due to the lack of isolated representatives and molecular detection techniques. Recently, we...

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