Download Advances in bacterial pathogen biology by Robert K. Poole PDF
By Robert K. Poole
This quantity is an updated review of the body structure of chosen pathogenic micro organism. every one bankruptcy is written by way of specialists within the box of that organism.The concentration is on biochemistry and body structure yet subject matters of scientific relevance are included.
- Contributions from prime gurus
- Informs and updates on all of the most modern advancements within the box
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Extra resources for Advances in bacterial pathogen biology
2013). Nitrite reductase NirBD is induced and plays an important role during in vitro dormancy of Mycobacterium tuberculosis. Journal of Bacteriology, 195, 4592–4599. , & Harwood, C. S. (2007). Responses of Pseudomonas aeruginosa to low oxygen indicate that growth in the cystic fibrosis lung is by aerobic respiration. Molecular Microbiology, 65, 153–165. , Kristiansen, J. , Abebe, L. , & Millett, W. (1996). Inhibition of the respiration of multi-drug resistant clinical isolates of Mycobacterium tuberculosis by thioridazine: Potential use for initial therapy of freshly diagnosed tuberculosis.
Nucleatum, another smf-based pathogen, conserves free energy by fermenting amino acids such as glutamate via the glutaconyl-CoA pathway (Bakken, Hogh, & Jensen, 1989; Beatrix, Bendrat, Rospert, & Buckel, 1990). Through landmark studies of this pathway in fusobacteria and clostridia, Buckel has concluded that energy generation depends on the concurrent processes of decarboxylative phosphorylation and electron bifurcation. , 1990). It is proposed that the high0 potential crotonoyl-CoA (E0 ¼ À10 mV) and low-potential ferredoxin 0 (E0 ¼ À400 mV) are thereafter simultaneously reduced by electrons derived 0 from the mid-potential NADH (E0 ¼ À280 mV); this electron bifurcation is mediated by the multimeric complex Bcd/EcfBC and depends on flavin serving as a two-electron gate.
Massive gene decay in the leprosy bacillus. Nature, 409, 1007–1011. Collins, M. , & Jones, D. (1981). Distribution of isoprenoid quinone structural types in distribution of isoprenoid quinone structural types in bacteria and their taxonomic implications. Microbiological Reviews, 45, 316–354. Comolli, J. , & Donohue, T. J. (2004). Differences in two Pseudomonas aeruginosa cbb3 cytochrome oxidases. Molecular Microbiology, 51, 1193–1203. , Thiberge, J. , Mandrand-Berthelot, M. , & Labigne, A. (2003).