Sugar metabolism by Brucellae.

[1]  Natalia N. Ivanova,et al.  The genome sequence of the facultative intracellular pathogen Brucella melitensis , 2001, Proceedings of the National Academy of Sciences of the United States of America.

[2]  L. Eskra,et al.  Brucella abortus Genes Identified following Constitutive Growth and Macrophage Infection , 2001, Infection and Immunity.

[3]  C. Baron,et al.  The Brucella suis Homologue of theAgrobacterium tumefaciens Chromosomal Virulence OperonchvE Is Essential for Sugar Utilization but Not for Survival in Macrophages , 2001, Journal of bacteriology.

[4]  J. Rolland,et al.  A functional water channel protein in the pathogenic bacterium Brucella abortus. , 2000, Microbiology.

[5]  C. Tang,et al.  Identification and characterization of in vivo attenuated mutants of Brucella melitensis , 2000, Molecular microbiology.

[6]  R. Ugalde,et al.  Identification and Characterization of the Brucella abortus Phosphoglucomutase Gene: Role of Lipopolysaccharide in Virulence and Intracellular Multiplication , 2000, Infection and Immunity.

[7]  T. Ficht,et al.  Identification of Genes Required for Chronic Persistence of Brucella abortus in Mice , 2000, Infection and Immunity.

[8]  J. Letesson,et al.  Conservation of seven genes involved in the biosynthesis of the lipopolysaccharide O-side chain in Brucella spp. , 2000, Research in microbiology.

[9]  D. O’Callaghan,et al.  Identification of Brucella suis Genes Affecting Intracellular Survival in an In Vitro Human Macrophage Infection Model by Signature-Tagged Transposon Mutagenesis , 2000, Infection and Immunity.

[10]  F. Sangari,et al.  The genes for erythritol catabolism are organized as an inducible operon in Brucella abortus. , 2000, Microbiology.

[11]  J. Liautard,et al.  Constitutive and Inducible Expression of Green Fluorescent Protein in Brucella suis , 1999, Infection and Immunity.

[12]  A. Cloeckaert,et al.  Molecular Characterization of a BrucellaSpecies Large DNA Fragment Deleted in Brucella abortusStrains: Evidence for a Locus Involved in the Synthesis of a Polysaccharide , 1999, Infection and Immunity.

[13]  G. Dougan,et al.  Brucella melitensis 16M: characterisation of the galE gene and mouse immunisation studies with a galE deficient mutant. , 1999, Veterinary microbiology.

[14]  J. Letesson,et al.  Identification of the Perosamine Synthetase Gene ofBrucella melitensis 16M and Involvement of Lipopolysaccharide O Side Chain in BrucellaSurvival in Mice and in Macrophages , 1998, Infection and Immunity.

[15]  F. Sangari,et al.  The defect in the metabolism of erythritol of the Brucella abortus B19 vaccine strain is unrelated with its attenuated virulence in mice. , 1998, Vaccine.

[16]  R. Ugalde,et al.  Molecular Cloning and Characterization of cgs, theBrucella abortus Cyclic β(1-2) Glucan Synthetase Gene: Genetic Complementation of Rhizobium meliloti ndvB andAgrobacterium tumefaciens chvB Mutants , 1998, Journal of bacteriology.

[17]  A. Scupham,et al.  Isolation and characterization of the UDP-glucose 4'-epimerase-encoding gene, galE, from Brucella abortus 2308. , 1997, Gene.

[18]  K. Jahans,et al.  The differentiation of Brucella species by substrate specific tetrazolium reduction. , 1997, Veterinary microbiology.

[19]  R. Essenberg,et al.  Brucella abortus strain 2308 putative glucose and galactose transporter gene: cloning and characterization. , 1997, Microbiology.

[20]  R. Ugalde,et al.  Periplasmic cyclic 1,2-beta-glucan in Brucella spp. is not osmoregulated. , 1997, Microbiology.

[21]  F. Sangari,et al.  Improvement of the Brucella abortus B19 vaccine by its preparation in a glycerol based medium. , 1996, Vaccine.

[22]  R. Essenberg Cloning and characterization of the glucokinase gene of Brucella abortus 19 and identification of three other genes , 1995, Journal of bacteriology.

[23]  F. Sangari,et al.  The Brucella abortus vaccine strain B19 carries a deletion in the erythritol catabolic genes. , 1994, FEMS microbiology letters.

[24]  M. Plommet,et al.  Minimal requirements for growth of Brucella suis and other Brucella species. , 1991, Zentralblatt fur Bakteriologie : international journal of medical microbiology.

[25]  J. Sperry,et al.  Inhibition of growth by erythritol catabolism in Brucella abortus , 1975, Journal of bacteriology.

[26]  J. Sperry,et al.  Erythritol catabolism by Brucella abortus , 1975, Journal of bacteriology.

[27]  D. Robertson,et al.  Glucose Transport in Brucella abortus , 1974, Journal of bacteriology.

[28]  Meyer Me Phenotypic comparison of Brucella ovis to the DNA-homologous Brucella species. , 1969 .

[29]  Meyer Me Brucella organisms isolated from dogs: comparison of characteristics of members of the genus Brucella. , 1969 .

[30]  D. Robertson,et al.  The glucose catabolism of the genus Brucella. II. Cell-free studies with B. abortus (S-19). , 1968, Archives of biochemistry and biophysics.

[31]  D. Robertson,et al.  The glucose catabolism of the genus Brucella. I. Evaluation of pathways. , 1968, Archives of biochemistry and biophysics.

[32]  S. Elberg,et al.  Response of the vaccine strain of Brucella melitensis Rev I to erythritol , 1967, Journal of bacteriology.

[33]  H. Smith,et al.  The effect of erythritol on the growth of S19 and other attenuated strains of Brucella abortus. , 1967, Research in veterinary science.

[34]  M. Meyer Metabolic Characterization of the Genus Brucella VI. Growth Stimulation by i-Erythritol Compared with Strain Virulence for Guinea Pigs , 1967, Journal of bacteriology.

[35]  H. Smith,et al.  Early appearance of colonies of Brucella spp. on solid media containing erythritol. , 1966, The Journal of applied bacteriology.

[36]  M. Meyer Metabolic Characterization of the Genus Brucella V. Relationship of Strain Oxidation Rate of i-Erythritol to Strain Virulence for Guinea Pigs , 1966, Journal of bacteriology.

[37]  J. Wilson,et al.  CHARACTERISTICS OF CARBON DIOXIDE-INDEPENDENT CULTURES OF BRUCELLA ABORTUS ISOLATED FROM CATTLE VACCINATED WITH STRAIN 19. , 1965, The Journal of infectious diseases.

[38]  J. Anderson,et al.  THE METABOLISM OF ERYTHRITOL BY BRUCELLA ABORTUS. , 1965, Journal of general microbiology.

[39]  H. Smith,et al.  THE CHEMICAL BASIS OF THE VIRULENCE OF BRUCELLA ABORTUS. V. THE BASIS OF INTRACELLULAR SURVIVAL AND GROWTH IN BOVINE PHAGOCYTES. , 1964, British journal of experimental pathology.

[40]  A. Williams,et al.  Fœtal Erythritol: A Cause of the Localization of Brucella Abortus in Bovine Contagious Abortion , 1962, Nature.

[41]  M. Meyer,et al.  METABOLIC CHARACTERIZATION OF THE GENUS BRUCELLA I , 1961, Journal of bacteriology.

[42]  M. Meyer,et al.  Species metabolic patterns within the genus Brucella. , 1958, American journal of veterinary research.

[43]  L. H. Graf,et al.  DEMONSTRATION OF AN IRON-ACTIVATED ALDOLASE IN SONIC EXTRACTS OF BRUCELLA SUIS , 1955, Journal of bacteriology.

[44]  M. J. Pickett,et al.  Speciation within the genus Brucella. IV. Fermentation of carbohydrates. , 1955, Journal of bacteriology.

[45]  P. Gerhardt,et al.  THE METABOLISM OF BRUCELLAE: THE ROLE OF CELLULAR PERMEABILITY , 1953, Journal of bacteriology.

[46]  R. Altenbern,et al.  Carbohydrate oxidation and citric acid synthesis by smooth Brucella abortus, strain 19. , 1952, Archives of biochemistry and biophysics.

[47]  W. G. Roessler,et al.  Anaerobic glycolysis by enzyme preparations of Brucella suis. , 1952, The Journal of biological chemistry.

[48]  N. Mccullough,et al.  Growth and manometric studies on carbohydrate utilization of Brucella. , 1951, The Journal of infectious diseases.

[49]  R. Altenbern,et al.  ALANINE SYNTHESIS AND CARBOHYDRATE OXIDATION BY SMOOTH BRUCELLA ABORTUS , 1951, Journal of bacteriology.

[50]  I. F. Huddleson,et al.  The influence of atmospherie gases on the multiplication of brucella. , 1950 .

[51]  I. F. Huddleson,et al.  The influence of oxygen on the metabolic activities of brucella. , 1950 .

[52]  P. Gerhardt,et al.  The Nutrition of Brucellae: Growth in Simple Chemically Defined Media , 1948, Journal of Bacteriology.

[53]  N. Mccullough,et al.  Growth of Brucella in a Simple Chemically Denned Medium , 1943 .