Amino acid‐dependent growth of Campylobacter jejuni: key roles for aspartase (AspA) under microaerobic and oxygen‐limited conditions and identification of AspB (Cj0762), essential for growth on glutamate
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B. Pearson | M. Stevens | F. Mulholland | E. Hitchin | D. Kelly | P. V. van Diemen | Pauline M. van Diemen | Edward Guccione | Maria Del Rocio Leon‐Kempis
[1] A. Conlan,et al. Competing Isogenic Campylobacter Strains Exhibit Variable Population Structures In Vivo , 2008, Applied and Environmental Microbiology.
[2] D. Nettleton,et al. CmeR Functions as a Pleiotropic Regulator and Is Required for Optimal Colonization of Campylobacter jejuni In Vivo , 2008, Journal of bacteriology.
[3] M. Bagnall,et al. γ-Glutamyl transpeptidase has a role in the persistent colonization of the avian gut by Campylobacter jejuni , 2007 .
[4] B. Pearson,et al. The Complete Genome Sequence of Campylobacter jejuni Strain 81116 (NCTC11828) , 2007, Journal of bacteriology.
[5] P. Henderson,et al. Metabolism of glutamine and glutathione via γ‐glutamyltranspeptidase and glutamate transport in Helicobacter pylori: possible significance in the pathophysiology of the organism , 2007, Molecular microbiology.
[6] L. Du,et al. Unique Features of a Highly Pathogenic Campylobacter jejuni Strain , 2007, Infection and Immunity.
[7] R. Poole,et al. Growth of Campylobacter jejuni on nitrate and nitrite: electron transport to NapA and NrfA via NrfH and distinct roles for NrfA and the globin Cgb in protection against nitrosative stress , 2007, Molecular microbiology.
[8] M. Williamson,et al. The Campylobacter jejuni PEB1a adhesin is an aspartate/glutamate‐binding protein of an ABC transporter essential for microaerobic growth on dicarboxylic amino acids , 2006, Molecular microbiology.
[9] D. Maskell,et al. Signature-Tagged Transposon Mutagenesis Studies Demonstrate the Dynamic Nature of Cecal Colonization of 2-Week-Old Chickens by Campylobacter jejuni , 2005, Applied and Environmental Microbiology.
[10] D. Maskell,et al. Campylobacter jejuni Gene Expression in the Chick Cecum: Evidence for Adaptation to a Low-Oxygen Environment , 2005, Infection and Immunity.
[11] Jason Hinds,et al. NssR, a member of the Crp‐Fnr superfamily from Campylobacter jejuni, regulates a nitrosative stress‐responsive regulon that includes both a single‐domain and a truncated haemoglobin , 2005, Molecular microbiology.
[12] B. Wren,et al. Development and Application of an Insertional System for Gene Delivery and Expression in Campylobacter jejuni , 2005, Applied and Environmental Microbiology.
[13] A Danchin,et al. The PatB protein of Bacillus subtilis is a C-S-lyase. , 2005, Biochimie.
[14] M. Trost,et al. Enzymes Involved in Anaerobic Respiration Appear To Play a Role in Actinobacillus pleuropneumoniae Virulence , 2005, Infection and Immunity.
[15] D. Maskell,et al. Adaptation of Campylobacter jejuni NCTC11168 to High-Level Colonization of the Avian Gastrointestinal Tract , 2004, Infection and Immunity.
[16] S. Falkow,et al. The Genome-Sequenced Variant of Campylobacter jejuni NCTC 11168 and the Original Clonal Clinical Isolate Differ Markedly in Colonization, Gene Expression, and Virulence-Associated Phenotypes , 2004, Journal of bacteriology.
[17] P. Barrow,et al. l-Serine Catabolism via an Oxygen-Labile l-Serine Dehydratase Is Essential for Colonization of the Avian Gut by Campylobacter jejuni , 2004, Infection and Immunity.
[18] Heidi J Sofia,et al. Phylogeny of the bacterial superfamily of Crp-Fnr transcription regulators: exploiting the metabolic spectrum by controlling alternative gene programs. , 2003, FEMS microbiology reviews.
[19] G. Unden,et al. Function of DcuS from Escherichia coli as a Fumarate-stimulated Histidine Protein Kinase in Vitro * , 2002, The Journal of Biological Chemistry.
[20] S. Hall,et al. Growth of Campylobacter jejuni Supported by Respiration of Fumarate, Nitrate, Nitrite, Trimethylamine-N-Oxide, or Dimethyl Sulfoxide Requires Oxygen , 2002, Journal of bacteriology.
[21] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[22] T. E. Hickey,et al. Campylobacter jejuni Cytolethal Distending Toxin Mediates Release of Interleukin-8 from Intestinal Epithelial Cells , 2000, Infection and Immunity.
[23] B. Barrell,et al. The genome sequence of the food-borne pathogen Campylobacter jejuni reveals hypervariable sequences , 2000, Nature.
[24] M. Blaser,et al. Pathophysiology of Campylobacter jejuni infections of humans. , 1999, Microbes and infection.
[25] D. Hoover,et al. CAMPYLOBACTER JEJUNI: A BACTERIAL PARADOX , 1999 .
[26] G. Unden,et al. Functioning of DcuC as the C4-Dicarboxylate Carrier during Glucose Fermentation by Escherichia coli , 1999, Journal of bacteriology.
[27] J. Guest,et al. Transcriptional Regulation and Organization of thedcuA and dcuB Genes, Encoding Homologous Anaerobic C4-Dicarboxylate Transporters inEscherichia coli , 1998 .
[28] J. Ketley,et al. Iron-Responsive Gene Regulation in a Campylobacter jejuni fur Mutant , 1998, Journal of bacteriology.
[29] G. Unden,et al. Fumarate Regulation of Gene Expression in Escherichia coli by the DcuSR (dcuSR Genes) Two-Component Regulatory System , 1998, Journal of bacteriology.
[30] R. Wait,et al. Changes with growth rate in the membrane lipid composition of and amino acid utilization by continuous cultures of Campylobacter jejuni , 1997, Journal of applied microbiology.
[31] G. Mendz,et al. Pyruvate metabolism in Campylobacter spp. , 1997, Biochimica et biophysica acta.
[32] G. Unden,et al. Identification of a third secondary carrier (DcuC) for anaerobic C4-dicarboxylate transport in Escherichia coli: roles of the three Dcu carriers in uptake and exchange , 1996, Journal of bacteriology.
[33] S. Holt,et al. The 46-kilodalton-hemolysin gene from Treponema denticola encodes a novel hemolysin homologous to aminotransferases , 1995, Infection and immunity.
[34] W. Boos,et al. MalY of Escherichia coli is an enzyme with the activity of a beta C-S lyase (cystathionase) , 1995, Journal of bacteriology.
[35] P. Christen,et al. Aminotransferases: demonstration of homology and division into evolutionary subgroups. , 1993, European journal of biochemistry.
[36] D. Taylor,et al. Chloramphenicol resistance in Campylobacter coli: nucleotide sequence, expression, and cloning vector construction. , 1990, Gene.
[37] J. Guest,et al. Differential roles of the Escherichia coli fumarases and fnr-dependent expression of fumarase B and aspartase , 1987 .
[38] Ju Liu,et al. Regulation of Escherichia coli L-asparaginase II and L-aspartase by the fnr gene-product , 1987 .
[39] Ju Liu,et al. Regulation of Escherichia colil‐asparaginase II and l‐aspartase by the fnr gene‐product , 1987 .
[40] E. Weiss,et al. Substrate utilization by Campylobacter jejuni and Campylobacter coli , 1986, Applied and environmental microbiology.
[41] M. Karmali,et al. Modified ammonia electrode method to investigate D-asparagine breakdown by Campylobacter strains , 1986, Journal of clinical microbiology.
[42] R. Krane,et al. The urodynamic aspects of the Guillain-Barré syndrome. , 1984, The Journal of urology.
[43] S. Kasatiya,et al. Effect of ferrous sulfate, sodium metabisulfite, and sodium pyruvate on survival of Campylobacter jejuni , 1983, Journal of clinical microbiology.
[44] R. Brown,et al. Effects of Dietary Protein and Intestinal Microflora on Excretion of Amino Acids in Poultry , 1982 .
[45] H. Smith,et al. The effect of antibiotic therapy on the faecal excretion of Salmonella typhimurium by experimentally infected chickens , 1975, Journal of Hygiene.
[46] B. Pearson,et al. Campylobacter jejuni gene expression in response to iron limitation and the role of Fur. , 2005, Microbiology.
[47] R. Viola,et al. L-aspartase: new tricks from an old enzyme. , 2000, Advances in enzymology and related areas of molecular biology.
[48] S Rozen,et al. Primer3 on the WWW for general users and for biologist programmers. , 2000, Methods in molecular biology.
[49] J. Guest,et al. Transcriptional regulation and organization of the dcuA and dcuB genes, encoding homologous anaerobic C4-dicarboxylate transporters in Escherichia coli. , 1998, Journal of bacteriology.
[50] J. Ketley. Pathogenesis of enteric infection by Campylobacter. , 1997, Microbiology.
[51] A. J. Barr,et al. SAS user's guide , 1979 .