Complete genome analysis of two new bacteriophages isolated from impetigo strains of Staphylococcus aureus

Virus Genes - Tập 51 - Trang 122-131 - 2015
Tibor Botka1, Vladislava Růžičková1, Hana Konečná2, Roman Pantůček1, Ivan Rychlík3, Zbyněk Zdráhal2, Petr Petráš4, Jiří Doškař1
1Department of Experimental Biology, Faculty of Science, Masaryk University, Brno, Czech Republic
2Central European Institute of Technology, Masaryk University, Brno, Czech Republic
3Veterinary Research Institute, Brno, Czech Republic
4National Reference Laboratory for Staphylococci, National Institute of Public Health, Prague, Czech Republic

Tóm tắt

Exfoliative toxin A (ETA)-coding temperate bacteriophages are leading contributors to the toxic phenotype of impetigo strains of Staphylococcus aureus. Two distinct eta gene-positive bacteriophages isolated from S. aureus strains which recently caused massive outbreaks of pemphigus neonatorum in Czech maternity hospitals were characterized. The phages, designated ϕB166 and ϕB236, were able to transfer the eta gene into a prophageless S. aureus strain which afterwards converted into an ETA producer. Complete phage genome sequences were determined, and a comparative analysis of five designed genomic regions revealed major variances between them. They differed in the genome size, number of open reading frames, genome architecture, and virion protein patterns. Their high mutual sequence similarity was detected only in the terminal regions of the genome. When compared with the so far described eta phage genomes, noticeable differences were found. Thus, both phages represent two new lineages of as yet not characterized bacteriophages of the Siphoviridae family having impact on pathogenicity of impetigo strains of S. aureus.

Tài liệu tham khảo

T. Bae, T. Baba, K. Hiramatsu, O. Schneewind, Mol. Microbiol. 62, 1035–1047 (2006) C. Goerke, R. Pantůček, S. Holtfreter, B. Schulte, M. Zink, D. Grumann, B.M. Broker, J. Doškař, C. Wolz, J. Bacteriol. 191, 3462–3468 (2009) R. Hrstka, V. Růžičková, P. Petráš, R. Pantůček, S. Rosypal, J. Doškař, Int. J. Med. Microbiol. 296, 49–54 (2006) J.J. Iandolo, V. Worrel, K.H. Groicher, Y. Qian, R. Tian, S. Kenton, A. Dorman, H. Ji, S. Lin, P. Loh, S. Qi, H. Zhu, B.A. Roe, Gene 289, 109–118 (2002) R. Pantůček, J. Doškař, V. Růžičková, P. Kašpárek, E. Oráčová, V. Kvardová, S. Rosypal, Arch. Virol. 149, 1689–1703 (2004) V. Růžičková, R. Karpíšková, R. Pantůček, M. Pospíšilová, P. Černíková, J. Doškař, Int. J. Food Microbiol. 121, 60–65 (2008) R.P. Novick, G.E. Christie, J.R. Penadés, Nat. Rev. Microbiol. 8, 541–551 (2010) A.J. McCarthy, A.A. Witney, J.A. Lindsay, Front. Cell. Infect. Microbiol. 2, 1–10 (2012) A.D. Dearborn, T. Dokland, Bacteriophage 2, 70–78 (2012) M. Varga, L. Kuntová, R. Pantůček, I. Mašlaňová, V. Růžičková, J. Doškař, FEMS Microbiol. Lett. 332, 146–152 (2012) I. Mašlaňová, J. Doškař, M. Varga, L. Kuntová, J. Mužík, D. Malúšková, V. Růžičková, R. Pantůček, Environ. Microbiol. Rep. 5, 66–73 (2013) V. Růžičková, R. Pantůček, P. Petráš, I. Machová, K. Kostýlková, J. Doškař, Int. J. Med. Microbiol. 302, 237–241 (2012) Y. Endo, T. Yamada, K. Matsunaga, Y. Hayakawa, T. Kaidoh, S. Takeuchi, Vet. Microbiol. 96, 81–90 (2003) M. Amagai, N. Matsuyoshi, Z.H. Wang, C. Andl, J.R. Stanley, Nat. Med. 6, 1275–1277 (2000) T. Yamaguchi, K. Nishifuji, M. Sasaki, Y. Fudaba, M. Aepfelbacher, T. Takata, M. Ohara, H. Komatsuzawa, M. Amagai, M. Sugai, Infect. Immun. 70, 5835–5845 (2002) S. Ladhani, R.W. Evans, Arch. Dis. Child. 78, 85–88 (1998) T. Yamaguchi, T. Hayashi, H. Takami, K. Nakasone, M. Ohnishi, K. Nakayama, S. Yamada, H. Komatsuzawa, M. Sugai, Mol. Microbiol. 38, 694–705 (2000) Y. Yoshizawa, J. Sakurada, S. Sakurai, K. Machida, I. Kondo, S. Masuda, Microbiol. Immunol. 44, 189–191 (2000) T. Yamaguchi, T. Hayashi, H. Takami, M. Ohnishi, T. Murata, K. Nakayama, K. Asakawa, M. Ohara, H. Komatsuzawa, M. Sugai, Infect. Immun. 69, 7760–7771 (2001) P. Holochová, V. Růžičková, R. Pantůček, P. Petráš, R. Janisch, J. Doškař, Res. Microbiol. 161, 260–267 (2010) D. Gutiérrez, E.M. Adriaenssens, B. Martínez, A. Rodríguez, R. Lavigne, A.M. Kropinski, P. García, Arch. Virol. 159, 389–398 (2014) V. Růžičková, R. Pantůček, P. Petráš, J. Doškař, I. Sedláček, S. Rosypal, Int. J. Med. Microbiol. 292, 541–545 (2003) P. Holochová, V. Růžičková, L. Dostálová, R. Pantůček, P. Petráš, J. Doškař, Diagn. Microbiol. Infect. Dis. 66, 248–252 (2010) Y. Duval-Iflah, Can. J. Microbiol. 18, 1491–1497 (1972) J. Sambrook, E.F. Fritsch, T. Maniatis, Molecular cloning: a laboratory manual, 2nd edn. (Cold Spring Harbor Laboratory, New York, 1989) J. Doškař, P. Pallová, R. Pantůček, S. Rosypal, V. Růžičková, P. Pantůčková, J. Kailerová, K. Klepárník, Z. Malá, P. Bocek, Can. J. Microbiol. 46, 1066–1076 (2000) J. Kahánková, R. Pantůček, C. Goerke, V. Růžičková, P. Holochová, J. Doškař, Environ. Microbiol. 12, 2527–2538 (2010) V. Růžičková, J. Voller, R. Pantůček, P. Petráš, J. Doškař, Folia Microbiol. 50, 499–502 (2005) V. Solovyev, A. Salamov, in Metagenomics and its applications in agriculture, biomedicine and environmental studies, ed. by R.W. Li (Nova Science Publishers, New York, 2011), pp. 61–78 E.A. Lesnik, R. Sampath, H.B. Levene, T.J. Henderson, J.A. McNeil, D.J. Ecker, Nucleic Acids Res. 29, 3583–3594 (2001) F. Gao, C.T. Zhang, Nucleic Acids Res. 34, 686–691 (2006) R. Pantůček, F. Götz, J. Doškař, S. Rosypal, Int. J. Syst. Bacteriol. 46, 216–222 (1996) L. Eyer, R. Pantůček, Z. Zdráhal, H. Konečná, P. Kašpárek, V. Růžičková, L. Hernychová, J. Preisler, J. Doškař, Proteomics 7, 64–72 (2007) R.W. Hendrix, M.C. Smith, R.N. Burns, M.E. Ford, G.F. Hatfull, Proc. Natl. Acad. Sci. U.S.A. 96, 2192–2197 (1999) T. Kwan, J. Liu, M. DuBow, P. Gros, J. Pelletier, Proc. Natl. Acad. Sci. U.S.A. 102, 5174–5179 (2005) M. De Paepe, G. Hutinet, O. Son, J. Amarir-Bouhram, S. Schbath, M.-A. Petit, PLoS Genet. (2014). doi:10.1371/journal.pgen.1004181 N. Van Der Mee-Marquet, A.-R. Corvaglia, A.-S. Valentin, D. Hernandez, X. Bertrand, M. Girard, J. Kluytmans, P.Y. Donnio, R. Quentin, P. Francois, Infect. Genet. Evol. 18, 299–308 (2013)