Haemophilus
Author:
Affiliation:
1. Department of Pediatrics; University of Oklahoma Health Sciences Center; Oklahoma City OK 73104
2. Department of Pediatrics and Department of Microbiology/Immunology; University of Oklahoma Health Sciences Center; Oklahoma City OK 73104
Publisher
ASM Press
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1128/9781555816544.ch18/fullpdf
Reference24 articles.
1. An isogenic hemoglobin receptor-deficient mutant of Haemophilus ducreyi is attenuated in the human model of experimental infection;Al-Tawfiq;J. Infect. Dis,2000
2. Involvement of HxuC outer membrane protein in utilization of hemoglobin by Haemophilus influenzae;Cope;Infect. Immun,2001
3. Binding of heme-hemopexin complexes by soluble HxuA protein allows utilization of this complexed heme by Haemophilus influenzae;Cope;Infect. Immun,1998
4. A gene cluster involved in the utilization of both free heme and heme:hemopexin by Haemophilus influenzae type B;Cope;J. Bacteriol,1995
5. Role of the Haemophilus influenzae Ton system in the internalization of heme from hemoglobin;Elkins;Infect. Immun,1998
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1. The role of the RNA chaperone Hfq in Haemophilus influenzae pathogenesis;BMC Microbiology;2013-06-16
2. Haemophilus influenzae OxyR: Characterization of Its Regulation, Regulon and Role in Fitness;PLoS ONE;2012-11-30
3. A functional tonB gene is required for both virulence and competitive fitness in a chinchilla model of Haemophilus influenzae otitis media;BMC Research Notes;2012-06-25
4. Haem release from haemopexin by HxuA allows Haemophilus influenzae to escape host nutritional immunity;Molecular Microbiology;2011-02-15
5. Catalase as a source of both X- and V-factor forHaemophilus influenzae;FEMS Microbiology Letters;2008-02
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