Fnr (EtrA) acts as a fine-tuning regulator of anaerobic metabolism in Shewanella oneidensis MR-1

被引:30
作者
Cruz-Garcia, Claribel [1 ,3 ,10 ]
Murray, Alison E. [1 ,11 ]
Rodrigues, Jorge L. M. [4 ]
Gralnick, Jeffrey A. [5 ]
McCue, Lee Ann [6 ]
Romine, Margaret F. [6 ]
Loeffler, Frank E. [7 ,8 ,9 ]
Tiedje, James M. [1 ,2 ,3 ]
机构
[1] Michigan State Univ, Ctr Microbial Ecol, E Lansing, MI 48824 USA
[2] Michigan State Univ, Dept Microbiol & Mol Genet, E Lansing, MI 48824 USA
[3] Michigan State Univ, Dept Crop & Soil Sci, E Lansing, MI 48824 USA
[4] Univ Texas Arlington, Dept Biol, Arlington, TX 76019 USA
[5] Univ Minnesota, Dept Microbiol, St Paul, MN 55108 USA
[6] Pacific NW Natl Lab, Richland, WA 99352 USA
[7] Univ Tennessee, Dept Microbiol, Knoxville, MN USA
[8] Univ Tennessee, Dept Civil & Environm Engn, Knoxville, MN USA
[9] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
[10] Georgia Inst Technol, Sch Civil & Environm Engn, Atlanta, GA 30332 USA
[11] Desert Res Inst, Div Earth & Ecosyst Sci, Reno, NV 89512 USA
来源
BMC MICROBIOLOGY | 2011年 / 11卷
基金
美国能源部;
关键词
HYBRID-CLUSTER PROTEIN; ESCHERICHIA-COLI; PRISMANE PROTEIN; RECEPTOR PROTEIN; STRUCTURAL BASIS; NITRATE; GENES; RESPIRATION; EXPRESSION; REDUCTASE;
D O I
10.1186/1471-2180-11-64
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Background: EtrA in Shewanella oneidensis MR-1, a model organism for study of adaptation to varied redox niches, shares 73.6% and 50.8% amino acid sequence identity with the oxygen-sensing regulators Fnr in E. coli and Anr in Pseudomonas aeruginosa, respectively; however, its regulatory role of anaerobic metabolism in Shewanella spp. is complex and not well understood. Results: The expression of the nap genes, nrfA, cymA and hcp was significantly reduced in etrA deletion mutant EtrA7-1; however, limited anaerobic growth and nitrate reduction occurred, suggesting that multiple regulators control nitrate reduction in this strain. Dimethyl sulfoxide (DMSO) and fumarate reductase gene expression was down-regulated at least 2-fold in the mutant, which, showed lower or no reduction of these electron acceptors when compared to the wild type, suggesting both respiratory pathways are under EtrA control. Transcript analysis further suggested a role of EtrA in prophage activation and down-regulation of genes implicated in aerobic metabolism. Conclusion: In contrast to previous studies that attributed a minor regulatory role to EtrA in Shewanella spp., this study demonstrates that EtrA acts as a global transcriptional regulator and, in conjunction with other regulators, fine-tunes the expression of genes involved in anaerobic metabolism in S. oneidensis strain MR-1. Transcriptomic and sequence analyses of the genes differentially expressed showed that those mostly affected by the mutation belonged to the "Energy metabolism" category, while stress-related genes were indirectly regulated in the mutant possibly as a result of a secondary perturbation (e. g. oxidative stress, starvation). We also conclude based on sequence, physiological and expression analyses that this regulator is more appropriately termed Fnr and recommend this descriptor be used in future publications.
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页数:14
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