protein_ID ▲▼ source ▲▼ pmid ▲▼ title ▲▼ authors ▲▼ date_of_publication ▲▼
25935 doi 10.1046/j.1365-2958.2000.02169.x Phage conversion of exfoliative toxin A production in <i>Staphylococcus aureus</i> Yamaguchi Takayuki; Hayashi Tetsuya; Takami Hideto; Nakasone Kaoru; Ohnishi Makoto; Nakayama Keisuke; Yamada Sakuo; Komatsuzawa Hitoshi; Sugai Motoyuki 2000-11-01
25935 pubmed 11115106 Phage conversion of exfoliative toxin A production in Staphylococcus aureus. Yamaguchi T; Hayashi T; Takami H; Nakasone K; Ohnishi M; Nakayama K; Yamada S; Komatsuzawa H; Sugai M 2000-Nov-01
25936 doi 10.1046/j.1365-2958.2000.02169.x Phage conversion of exfoliative toxin A production in <i>Staphylococcus aureus</i> Yamaguchi Takayuki; Hayashi Tetsuya; Takami Hideto; Nakasone Kaoru; Ohnishi Makoto; Nakayama Keisuke; Yamada Sakuo; Komatsuzawa Hitoshi; Sugai Motoyuki 2000-11-01
25936 pubmed 11115106 Phage conversion of exfoliative toxin A production in Staphylococcus aureus. Yamaguchi T; Hayashi T; Takami H; Nakasone K; Ohnishi M; Nakayama K; Yamada S; Komatsuzawa H; Sugai M 2000-Nov-01
25937 doi 10.4319/lo.2000.45.2.0408 The complete genomic sequence of the marine phage Roseophage SIO1 shares homology with nonmarine phages Rohwer Forest; Segall Anca; Steward Griegx; Seguritan Victor; Breitbart Mya; Wolven Felise; Farooq Azam Farooqx 2000-03-01
25938 doi 10.1016/j.virol.2005.12.010 Complete nucleotide sequence and genome analysis of bacteriophage BFK20 — A lytic phage of the industrial producer Brevibacterium flavum Bukovska Gabriela; Klucar Lubos; Vlcek Cestmir; Adamovic Jan; Turna Jan; Timko Jozef 2006-04-01
25938 pubmed 16457869 Complete nucleotide sequence and genome analysis of bacteriophage BFK20--a lytic phage of the industrial producer Brevibacterium flavum. Bukovska G; Klucar L; Vlcek C; Adamovic J; Turna J; Timko J 2006-02-02
25939 doi 10.1016/j.virol.2005.12.010 Complete nucleotide sequence and genome analysis of bacteriophage BFK20 — A lytic phage of the industrial producer Brevibacterium flavum Bukovska Gabriela; Klucar Lubos; Vlcek Cestmir; Adamovic Jan; Turna Jan; Timko Jozef 2006-04-01
25939 pubmed 16457869 Complete nucleotide sequence and genome analysis of bacteriophage BFK20--a lytic phage of the industrial producer Brevibacterium flavum. Bukovska G; Klucar L; Vlcek C; Adamovic J; Turna J; Timko J 2006-02-02
25940 doi 10.1271/bbb.64.2631 Prophage, φPV83-pro, Carrying Panton-Valentine Leukocidin Genes, on the<i>Staphylococcus aureus</i>P83 Chromosome: Comparative Analysis of the Genome Structures of φPV83-pro, φPVL, φ11, and Other Phages ZOU Dan; KANEKO Jun; NARITA Sachiko; KAMIO Yoshiyuki 2000-01-01
25940 pubmed 11210127 Prophage, phiPV83-pro, carrying panton-valentine leukocidin genes, on the Staphylococcus aureus P83 chromosome: comparative analysis of the genome structures of phiPV83-pro, phiPVL, phi11, and other phages. Zou D; Kaneko J; Narita S; Kamio Y 2000-Dec-01
25941 doi 10.1271/bbb.64.2631 Prophage, φPV83-pro, Carrying Panton-Valentine Leukocidin Genes, on the<i>Staphylococcus aureus</i>P83 Chromosome: Comparative Analysis of the Genome Structures of φPV83-pro, φPVL, φ11, and Other Phages ZOU Dan; KANEKO Jun; NARITA Sachiko; KAMIO Yoshiyuki 2000-01-01
25941 pubmed 11210127 Prophage, phiPV83-pro, carrying panton-valentine leukocidin genes, on the Staphylococcus aureus P83 chromosome: comparative analysis of the genome structures of phiPV83-pro, phiPVL, phi11, and other phages. Zou D; Kaneko J; Narita S; Kamio Y 2000-Dec-01
25942 doi 10.1271/bbb.64.2631 Prophage, φPV83-pro, Carrying Panton-Valentine Leukocidin Genes, on the<i>Staphylococcus aureus</i>P83 Chromosome: Comparative Analysis of the Genome Structures of φPV83-pro, φPVL, φ11, and Other Phages ZOU Dan; KANEKO Jun; NARITA Sachiko; KAMIO Yoshiyuki 2000-01-01
25942 pubmed 11210127 Prophage, phiPV83-pro, carrying panton-valentine leukocidin genes, on the Staphylococcus aureus P83 chromosome: comparative analysis of the genome structures of phiPV83-pro, phiPVL, phi11, and other phages. Zou D; Kaneko J; Narita S; Kamio Y 2000-Dec-01
25943 doi 10.1128/IAI.68.9.4850-4855.2000 Characterization of a Shiga Toxin 2e-Converting Bacteriophage from an <i>Escherichia coli</i> Strain of Human Origin Muniesa Maite; Recktenwald Jürgen; Bielaszewska Martina; Karch Helge; Schmidt Herbert 2000-09-01
25943 doi 10.1128/IAI.70.4.1896-1908.2002 The Nucleotide Sequence of Shiga Toxin (Stx) 2e-Encoding Phage φP27 Is Not Related to Other Stx Phage Genomes, but the Modular Genetic Structure Is Conserved Recktenwald Jürgen; Schmidt Herbert 2002-04-01
25943 pubmed 10948096 Characterization of a shiga toxin 2e-converting bacteriophage from an Escherichia coli strain of human origin. Muniesa M; Recktenwald J; Bielaszewska M; Karch H; Schmidt H 2000-Sep-01
25943 pubmed 11895953 The nucleotide sequence of Shiga toxin (Stx) 2e-encoding phage phiP27 is not related to other Stx phage genomes, but the modular genetic structure is conserved. Recktenwald J; Schmidt H 2002-Apr-01
25944 doi 10.1006/viro.2000.0374 Characterization of Φ8, a Bacteriophage Containing Three Double-Stranded RNA Genomic Segments and Distantly Related to Φ6 Hoogstraten Deborah; Qiao Xueying; Sun Yang; Hu Aizong; Onodera Shiroh; Mindich Leonard 2000-06-01
25944 pubmed 10873764 Characterization of phi8, a bacteriophage containing three double-stranded RNA genomic segments and distantly related to Phi6. Hoogstraten D; Qiao X; Sun Y; Hu A; Onodera S; Mindich L 2000-Jun-20
25945 doi 10.1007/s007050070073 Cloning, sequence analysis, and expression of Lactobacillus casei phage PL-1 lysis genes Kashige N.; Nakashima Y.; Miake F.; Watanabe K. 2000-08-17
25945 pubmed 11003466 Cloning, sequence analysis, and expression of Lactobacillus casei phage PL-1 lysis genes. Kashige N; Nakashima Y; Miake F; Watanabe K 2000-01-01
25946 doi 10.1006/viro.1998.9353 The Site-Specific Recombination System of theLactobacillusSpecies Bacteriophage A2 Integrates in Gram-Positive and Gram-Negative Bacteria Alvarez Miguel A.; Herrero Mónica; Suárez Juan E. 1998-10-01
25946 doi 10.1006/viro.2000.0382 Characterization of the DNA Replication Module of Bacteriophage A2 and Use of Its Origin of Replication as a Defense against Infection during Milk Fermentation by Lactobacillus casei Moscoso Miriam; Suárez Juan E. 2000-07-01

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