| NCIMB number | NCIMB 8191 |
| Deposit type | Bacteria |
| Type strain | Yes |
| GMO | No |
| Taxon name | Enterococcus hirae |
| Depositor designation | R |
| Preservation method | Lyophilised |
| Preserved as | Streptococcus sp. |
| Price band | A |
| Media | 079 |
| Gas regime | aerobic |
| Growth factors (and/or information) | Blood agar, 37C, 2d: good growth, non haemolytic |
| ACDP category | 2 |
| Hazard information | This genus has been associated with nosocomial infections, especially of urinary tract. Associated with growth depression in young chicks. |
| Additional hazard information | Ref: R C Moellering, Clinical Infectious Diseases 1992, 14, 1173-8. Emergence of Enterococcus as a significant pathogen. |
| Colony Edge | Entire |
| Colony Surface | Shiny |
| Colony Elevation | Flat |
| Colony Colour | White |
| Cellular Shape | Coccus |
| Cellular Arrangement | Singly/Pairs |
| Gram stain | Gram Positive |
| Depositor Company | American Type Culture Collection (ATCC) |
| Depositor Address | 12301 Parklawn Drive Rockville Maryland 20852 U.S.A. |
| Date of Accession | 30/11/1950 |
| History | "Merck & Co., Inc." |
| Other collection IDs | ATCC8043 ATCC9790 CCM2423 CCM2424 CIP82.112 DSM20160 NCDO997 NCDO1258 NCTC6459 NCIMB6459 NCIMB8123 |
| Yeast? | False |
| K12 | No |
| References | Stokes J.L. et al (1945) J. biol. Chem. 160 p35 Merrifield R.B. and Dunn M.S. (1948) Arch. Biochem. 16 pp339-341 Barnes E.M., Ingram M. and Ingram G.C. (1956) J. appl. Bact. 19(2) pp204-211 Can. J. Microbiol. (1956) 2 p607 Shockman G.D. et al (1963) J. Bact. 85 p168 Wicken A.J. et al (1963) J. gen. Microbiol. 31 p231-239 Wicken A.J. and Baddiley J. (1963) Biochem J. 87 pp54-62 Brock T.D. et al (1963) J. Bact. 86 p702 Abrams A., Nielson L. and Thaemert J. (1964) Biochim. biophys. Acta Nielsen L. and Abrams A. (1964) Biochim. biophys. Res. Commun. 17 p680 Shockman G.D., Thompson J.S and Canover M.S. (1965) J. Bact. 90 p575 Harold F.M. and Baardon J.R. (1966) J. Bact. 91 p2257 Zarlengro M.H. and Schutz S.G. (1966) Biochim. biophys. Acta 126 p308 Peiringer R.A. (1968) J. biol. Chem. 243(18) pp4894-4903. The metabolism of glyceride glycolipids. I. Biosynthesis of monoglucosyl diglyceride and dyglucosyl by glucosyltransferase pathways in Streptococcus faecalis. Paolasova E. and Baarda J.R. (1970) Biochim. biophys. Acta 196(2) pp235-244. Kocun F.J. (1970) Biochim. biophys. Acta 202(2) pp277-282. Amino acid containing phospholipids of S. faecalis. Brown D.G. and Abrams A. (1970) Biochim. biophys. Acta 200(3) p522. The proteins in membrane and cytoplasmic ribosomes of S. faecalis. An extra protein in the 50-S subparticles of cytoplasmic ribosomes. Smith D.G. (1970) J. appl. Bact. 33 p474-477 Schnebli H.P. and Abrams A. (1970) J. biol. Chem. 245(5) p1115. Membrane adenosine Triphosphatase from S. faecalis. Preparation and homogeneity. Rahmanian M. et al (1971) J. biol. Chem. 246(3) p823 Toon P. et al (1972) Biochem. J. 127 pp399-409. The lipid techoic acid complex in the cytoplasmic membrane of S. faecalis NCIB 8191. Staudenbauer W. and Strominger J.L. (1972) J. biol. Chem. 247(16) p5095. Activation of D-aspartic acid for incorporation into peptidoglycan. Staudenbauer W. and Strominger J.L. (1972) J. biol. Chem. 247(16) p5103. Partial purification and characterisation of an asparate racemase from S. faecalis. Sayare M. et al (1972) J. Bact. 112(1) p337 Coley J. et al (1972) J. gen. Microbiol. 73 p587 Umbreit J.N. et al (1972) J. Bact. 112(3) p1302 Isquith A.J. et al (1972) Appl. Microbiol. 24(6) p859 Soper J.W. and Winter C.G. (1973) Biochim. biophys. Acta 297 p333 Coyette J. and Shockman G.D. (1973) J. Bact. 114(1) p34 Marquis R.E. and Carstensen E.L. (1973) J. Bact. 113(3) p1198 Marquis R.E. et al (1973) J. Bact. 114(2) p491 Asghar S.S. et al (1973) J. biol. Chem. 248(15) p5225 Harold F.M. and Levin E. (1974) J. Bact. 117(3) p1141 Bauer H. et al (1974) Arch Microbiol. 97 p17 Coyette J. et al (1974) Eur. J. Biochem. 44 p459 Higgins M.L. et al (1974) J. Bact. 118(2) p681 Tsien H.C. and Higgins M.L. (1974) J. Bact. 118(2) p725 Joseph R. and Shockman G.D. (1974) J. Bact. 118(2) p735 Chemical disinfectants and antiseptics -- Quantitative suspension test for the evaluation of bactericidal activity of chemical disinfectants and antiseptics used in food, industrial, domestic and institutional areas -- Test method and requirements (phase 2, step 1).London, UK: British Standards Institution; British Standard BS EN 1276, (journal unknown) , 1997, 1997 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Characterization of different food-isolated Enterococcus strains by MALDI-TOF mass fingerprinting, Electrophoresis 34(15), 2240-2250, 2013 cpnDB: a chaperonin sequence database, Genome Res 14(8), 1669-1675, 2004 Application of multilocus sequence analysis (MLSA) for rapid identification of Enterococcus species based on rpoA and pheS genes, Microbiology 151(7), 2141-2150, 2005 Phylogeny and identification of Enterococci by atpA gene sequence analysis, J Clin Microbiol 43(5), 2224-2230, 2005 Determination of 16S rRNA sequences of enterococci and application to species identification of nonmotile Enterococcus gallinarum isolates, J Clin Microbiol 36(11), 3399-3407, 1998 Diversity of domain V of 23S rRNA gene sequence in different Enterococcus species, J Clin Microbiol 38(11), 3991-3993, 2000 Division of the genus Enterococcus into species groups using PCR-based molecular typing methods, Microbiology 144 ( Pt 5), 1171-1179, 1998 Evidence for horizontal gene transfer in evolution of elongation factor Tu in enterococci, J Bacteriol 182(24), 6913-6920, 2000 Evidence that the PBP 5 synthesis repressor (psr) of Enterococcus hirae is also involved in the regulation of cell wall composition and other cell wall-related properties, J Bacteriol 178(17), 5272-5278, 1996 Evolution of structure and substrate specificity in D-alanine:D-alanine ligases and related enzymes, J Mol Evol 42(6), 706-712, 1996 Genome Sequence of Enterococcus hirae (Streptococcus faecalis) ATCC 9790, a Model Organism for the Study of Ion Transport, Bioenergetics, and Copper Homeostasis, J Bacteriol 194(18), 5126-5127, 2012 Identification of clinically relevant enterococcus species by direct sequencing of groES and spacer region, J Clin Microbiol 43(1), 235-241, 2005 Identification of Enterococcus species and phenotypically similar Lactococcus and Vagococcus species by reverse checkerboard hybridization to chaperonin 60 gene sequences, J Clin Microbiol 38(11), 3953-3959, 2000 Identification of Enterococcus spp. based on specific hybridisation with 16S rDNA probes, J Microbiol Methods 50(2), 115-121, 2002 Primary and secondary structures of rRNA spacer regions in enterococci, Microbiology 143 ( Pt 3), 823-834, 1997 Reclassification of Brevibacterium incertum (Breed 1953) as Desemzia incerta gen. nov., comb. nov, Int J Syst Bacteriol 49 Pt 1, 185-188, 1999 Redefining the role of psr in beta-lactam resistance and cell autolysis of Enterococcus hirae, J Bacteriol 185(20), 5925-5935, 2003 Reevaluation of the Taxonomic Status of Recently Described Species of Enterococcus: Evidence that E. thailandicus Is a Senior Subjective Synonym of "E. sanguinicola" and Confirmation of E. caccae as a Species Distinct from E. silesiacus, J Clin Microbiol 49(7), 2676-2679, 2011 Sequencing the gene encoding manganese-dependent superoxide dismutase for rapid species identification of enterococci, J Clin Microbiol 38(1), 415-418, 2000 The PBP 5 synthesis repressor (psr) gene of Enterococcus hirae ATCC 9790 is substantially longer than previously reported, FEMS Microbiol Lett 166(2), 355-360, 1998 The ponA gene of Enterococcus faecalis JH2-2 codes for a low-affinity class A penicillin-binding protein, J Bacteriol 186(13), 4412-4416, 2004 The stress response protein Gls24 is induced by copper and interacts with the CopZ copper chaperone of Enterococcus hirae, FEMS Microbiol Lett 302(1), 69-75, 2010 Water quality--Detection and enumeration of intestinal enterococci in surface and waste water--Part 1: Miniaturized method (MPN) by inoculation in liquid medium. Annex E. Quality criteria for manufacturing of the medium in microtitre plates.Geneva (Switzerland): International Organization for Standardization/ANSI, (journal unknown) , ISO ISO 7899-1, 1998 |
| NCIMB number | NCIMB 8191 |
| Deposit type | Bacteria |
| Type strain | Yes |
| GMO | No |
| Taxon name | Enterococcus hirae |
| Depositor designation | R |
| Preservation method | Lyophilised |
| Preserved as | Streptococcus sp. |
| Price band | A |
| Media | 079 |
| Gas regime | aerobic |
| Growth factors (and/or information) | Blood agar, 37C, 2d: good growth, non haemolytic |
| ACDP category | 2 |
| Hazard information | This genus has been associated with nosocomial infections, especially of urinary tract. Associated with growth depression in young chicks. |
| Additional hazard information | Ref: R C Moellering, Clinical Infectious Diseases 1992, 14, 1173-8. Emergence of Enterococcus as a significant pathogen. |
| Colony Edge | Entire |
| Colony Surface | Shiny |
| Colony Elevation | Flat |
| Colony Colour | White |
| Cellular Shape | Coccus |
| Cellular Arrangement | Singly/Pairs |
| Gram stain | Gram Positive |
| Depositor Company | American Type Culture Collection (ATCC) |
| Depositor Address | 12301 Parklawn Drive Rockville Maryland 20852 U.S.A. |
| Date of Accession | 30/11/1950 |
| History | "Merck & Co., Inc." |
| Other collection IDs | ATCC8043 ATCC9790 CCM2423 CCM2424 CIP82.112 DSM20160 NCDO997 NCDO1258 NCTC6459 NCIMB6459 NCIMB8123 |
| Yeast? | False |
| K12 | No |
| References | Stokes J.L. et al (1945) J. biol. Chem. 160 p35 Merrifield R.B. and Dunn M.S. (1948) Arch. Biochem. 16 pp339-341 Barnes E.M., Ingram M. and Ingram G.C. (1956) J. appl. Bact. 19(2) pp204-211 Can. J. Microbiol. (1956) 2 p607 Shockman G.D. et al (1963) J. Bact. 85 p168 Wicken A.J. et al (1963) J. gen. Microbiol. 31 p231-239 Wicken A.J. and Baddiley J. (1963) Biochem J. 87 pp54-62 Brock T.D. et al (1963) J. Bact. 86 p702 Abrams A., Nielson L. and Thaemert J. (1964) Biochim. biophys. Acta Nielsen L. and Abrams A. (1964) Biochim. biophys. Res. Commun. 17 p680 Shockman G.D., Thompson J.S and Canover M.S. (1965) J. Bact. 90 p575 Harold F.M. and Baardon J.R. (1966) J. Bact. 91 p2257 Zarlengro M.H. and Schutz S.G. (1966) Biochim. biophys. Acta 126 p308 Peiringer R.A. (1968) J. biol. Chem. 243(18) pp4894-4903. The metabolism of glyceride glycolipids. I. Biosynthesis of monoglucosyl diglyceride and dyglucosyl by glucosyltransferase pathways in Streptococcus faecalis. Paolasova E. and Baarda J.R. (1970) Biochim. biophys. Acta 196(2) pp235-244. Kocun F.J. (1970) Biochim. biophys. Acta 202(2) pp277-282. Amino acid containing phospholipids of S. faecalis. Brown D.G. and Abrams A. (1970) Biochim. biophys. Acta 200(3) p522. The proteins in membrane and cytoplasmic ribosomes of S. faecalis. An extra protein in the 50-S subparticles of cytoplasmic ribosomes. Smith D.G. (1970) J. appl. Bact. 33 p474-477 Schnebli H.P. and Abrams A. (1970) J. biol. Chem. 245(5) p1115. Membrane adenosine Triphosphatase from S. faecalis. Preparation and homogeneity. Rahmanian M. et al (1971) J. biol. Chem. 246(3) p823 Toon P. et al (1972) Biochem. J. 127 pp399-409. The lipid techoic acid complex in the cytoplasmic membrane of S. faecalis NCIB 8191. Staudenbauer W. and Strominger J.L. (1972) J. biol. Chem. 247(16) p5095. Activation of D-aspartic acid for incorporation into peptidoglycan. Staudenbauer W. and Strominger J.L. (1972) J. biol. Chem. 247(16) p5103. Partial purification and characterisation of an asparate racemase from S. faecalis. Sayare M. et al (1972) J. Bact. 112(1) p337 Coley J. et al (1972) J. gen. Microbiol. 73 p587 Umbreit J.N. et al (1972) J. Bact. 112(3) p1302 Isquith A.J. et al (1972) Appl. Microbiol. 24(6) p859 Soper J.W. and Winter C.G. (1973) Biochim. biophys. Acta 297 p333 Coyette J. and Shockman G.D. (1973) J. Bact. 114(1) p34 Marquis R.E. and Carstensen E.L. (1973) J. Bact. 113(3) p1198 Marquis R.E. et al (1973) J. Bact. 114(2) p491 Asghar S.S. et al (1973) J. biol. Chem. 248(15) p5225 Harold F.M. and Levin E. (1974) J. Bact. 117(3) p1141 Bauer H. et al (1974) Arch Microbiol. 97 p17 Coyette J. et al (1974) Eur. J. Biochem. 44 p459 Higgins M.L. et al (1974) J. Bact. 118(2) p681 Tsien H.C. and Higgins M.L. (1974) J. Bact. 118(2) p725 Joseph R. and Shockman G.D. (1974) J. Bact. 118(2) p735 Chemical disinfectants and antiseptics -- Quantitative suspension test for the evaluation of bactericidal activity of chemical disinfectants and antiseptics used in food, industrial, domestic and institutional areas -- Test method and requirements (phase 2, step 1).London, UK: British Standards Institution; British Standard BS EN 1276, (journal unknown) , 1997, 1997 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Characterization of different food-isolated Enterococcus strains by MALDI-TOF mass fingerprinting, Electrophoresis 34(15), 2240-2250, 2013 cpnDB: a chaperonin sequence database, Genome Res 14(8), 1669-1675, 2004 Application of multilocus sequence analysis (MLSA) for rapid identification of Enterococcus species based on rpoA and pheS genes, Microbiology 151(7), 2141-2150, 2005 Phylogeny and identification of Enterococci by atpA gene sequence analysis, J Clin Microbiol 43(5), 2224-2230, 2005 Determination of 16S rRNA sequences of enterococci and application to species identification of nonmotile Enterococcus gallinarum isolates, J Clin Microbiol 36(11), 3399-3407, 1998 Diversity of domain V of 23S rRNA gene sequence in different Enterococcus species, J Clin Microbiol 38(11), 3991-3993, 2000 Division of the genus Enterococcus into species groups using PCR-based molecular typing methods, Microbiology 144 ( Pt 5), 1171-1179, 1998 Evidence for horizontal gene transfer in evolution of elongation factor Tu in enterococci, J Bacteriol 182(24), 6913-6920, 2000 Evidence that the PBP 5 synthesis repressor (psr) of Enterococcus hirae is also involved in the regulation of cell wall composition and other cell wall-related properties, J Bacteriol 178(17), 5272-5278, 1996 Evolution of structure and substrate specificity in D-alanine:D-alanine ligases and related enzymes, J Mol Evol 42(6), 706-712, 1996 Genome Sequence of Enterococcus hirae (Streptococcus faecalis) ATCC 9790, a Model Organism for the Study of Ion Transport, Bioenergetics, and Copper Homeostasis, J Bacteriol 194(18), 5126-5127, 2012 Identification of clinically relevant enterococcus species by direct sequencing of groES and spacer region, J Clin Microbiol 43(1), 235-241, 2005 Identification of Enterococcus species and phenotypically similar Lactococcus and Vagococcus species by reverse checkerboard hybridization to chaperonin 60 gene sequences, J Clin Microbiol 38(11), 3953-3959, 2000 Identification of Enterococcus spp. based on specific hybridisation with 16S rDNA probes, J Microbiol Methods 50(2), 115-121, 2002 Primary and secondary structures of rRNA spacer regions in enterococci, Microbiology 143 ( Pt 3), 823-834, 1997 Reclassification of Brevibacterium incertum (Breed 1953) as Desemzia incerta gen. nov., comb. nov, Int J Syst Bacteriol 49 Pt 1, 185-188, 1999 Redefining the role of psr in beta-lactam resistance and cell autolysis of Enterococcus hirae, J Bacteriol 185(20), 5925-5935, 2003 Reevaluation of the Taxonomic Status of Recently Described Species of Enterococcus: Evidence that E. thailandicus Is a Senior Subjective Synonym of "E. sanguinicola" and Confirmation of E. caccae as a Species Distinct from E. silesiacus, J Clin Microbiol 49(7), 2676-2679, 2011 Sequencing the gene encoding manganese-dependent superoxide dismutase for rapid species identification of enterococci, J Clin Microbiol 38(1), 415-418, 2000 The PBP 5 synthesis repressor (psr) gene of Enterococcus hirae ATCC 9790 is substantially longer than previously reported, FEMS Microbiol Lett 166(2), 355-360, 1998 The ponA gene of Enterococcus faecalis JH2-2 codes for a low-affinity class A penicillin-binding protein, J Bacteriol 186(13), 4412-4416, 2004 The stress response protein Gls24 is induced by copper and interacts with the CopZ copper chaperone of Enterococcus hirae, FEMS Microbiol Lett 302(1), 69-75, 2010 Water quality--Detection and enumeration of intestinal enterococci in surface and waste water--Part 1: Miniaturized method (MPN) by inoculation in liquid medium. Annex E. Quality criteria for manufacturing of the medium in microtitre plates.Geneva (Switzerland): International Organization for Standardization/ANSI, (journal unknown) , ISO ISO 7899-1, 1998 |