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1.
Viruses ; 11(1)2018 12 22.
Artigo em Inglês | MEDLINE | ID: mdl-30583530

RESUMO

Streptococcus thermophilus is considered one of the most important species for the dairy industry. Due to their diffusion in dairy environments, bacteriophages can represent a threat to this widely used bacterial species. Despite the presence of a CRISPR-Cas system in the S. thermophilus genome, some lysogenic strains harbor cryptic prophages that can increase the phage-host resistance defense. This characteristic was identified in the dairy strain S. thermophilus M17PTZA496, which contains two integrated prophages 51.8 and 28.3 Kb long, respectively. In the present study, defense mechanisms, such as a lipoprotein-encoding gene and Siphovirus Gp157, the last associated to the presence of a noncoding viral DNA element, were identified in the prophage M17PTZA496 genome. The ability to overexpress genes involved in these defense mechanisms under specific stressful conditions, such as phage attack, has been demonstrated. Despite the addition of increasing amounts of Mitomycin C, M17PTZA496 was found to be non-inducible. However, the transcriptional activity of the phage terminase large subunit was detected in the presence of the antagonist phage vB_SthS-VA460 and of Mitomycin C. The discovery of an additional immune mechanism, associated with bacteriophage-insensitive strains, is of utmost importance, for technological applications and industrial processes. To our knowledge, this is the first study reporting the capability of a prophage integrated into the S. thermophilus genome expressing different phage defense mechanisms. Bacteriophages are widespread entities that constantly threaten starter cultures in the dairy industry. In cheese and yogurt manufacturing, the lysis of Streptococcus thermophilus cultures by viral attacks can lead to huge economic losses. Nowadays S. thermophilus is considered a well-stablished model organism for the study of natural adaptive immunity (CRISPR-Cas) against phage and plasmids, however, the identification of novel bacteriophage-resistance mechanisms, in this species, is strongly desirable. Here, we demonstrated that the presence of a non-inducible prophage confers phage-immunity to an S. thermophilus strain, by the presence of ltp and a viral noncoding region. S. thermophilus M17PTZA496 arises as an unconventional model to study phage resistance and potentially represents an alternative starter strain for dairy productions.


Assuntos
Genoma Viral , Prófagos/imunologia , Streptococcus thermophilus/imunologia , Streptococcus thermophilus/virologia , Integração Viral , Genoma Bacteriano/genética , Lipoproteínas/genética , Mitomicina/farmacologia , Inibidores da Síntese de Ácido Nucleico/farmacologia , RNA não Traduzido/genética , Streptococcus thermophilus/efeitos dos fármacos
2.
Vaccine ; 28(33): 5458-66, 2010 Jul 26.
Artigo em Inglês | MEDLINE | ID: mdl-20558245

RESUMO

Salmonella enterica serovar Enteritidis (S. Enteritidis) is a wide host range serovar belonging to the S. enterica genus. Worldwide, it is one of the most frequent causes of food borne disease. Similar to S. Typhimurium, some virulence genes of S. Enteritidis are located in pathogenicity islands and prophages. In this study we have generated a mutant strain of S. Enteritidis lacking a prophage-like element, denominated varphiSE12. The resulting mutant strain was attenuated and promoted protective immunity in infected mice. Although S. Enteritidis strains lacking the complete prophage varphiSE12 remained capable of surviving inside phagocytic cells, they showed a significantly reduced capacity to colonize internal organs and failed to cause lethal disease in mice. Consistent with these data, infection with S. Enteritidis strains lacking prophage varphiSE12 promoted the production of anti-Salmonella IgG antibodies and led to protection against a challenge with virulent strains of S. Enteritidis. These results suggest that strains lacking this prophage can induce a protective immunity in mice and be considered as potential attenuated vaccines against S. Enteritidis.


Assuntos
Sequência de Bases , Prófagos/imunologia , Infecções por Salmonella/imunologia , Vacinas contra Salmonella/imunologia , Salmonella enteritidis/imunologia , Deleção de Sequência/imunologia , Fatores de Virulência/imunologia , Animais , Anticorpos Antibacterianos/imunologia , Imunoglobulina G/imunologia , Camundongos , Fagócitos/imunologia , Fagócitos/microbiologia , Prófagos/genética , Infecções por Salmonella/genética , Infecções por Salmonella/prevenção & controle , Vacinas contra Salmonella/genética , Salmonella enteritidis/genética , Salmonella enteritidis/patogenicidade , Deleção de Sequência/genética , Vacinas Atenuadas/genética , Vacinas Atenuadas/imunologia , Fatores de Virulência/genética
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