VGJφ, a Novel Filamentous Phage of Vibrio cholerae , Integrates into the Same Chromosomal Site as CTXφ

Author:

Campos Javier1,Martínez Eriel1,Suzarte Edith1,Rodríguez Boris L.1,Marrero Karen1,Silva Yussuan1,Ledón Talena1,del Sol Ricardo1,Fando Rafael1

Affiliation:

1. Departamento de Genética, Centro Nacional de Investigaciones Científicas, Havana, Cuba

Abstract

ABSTRACT We describe a novel filamentous phage, designated VGJφ, isolated from strain SG25-1 of Vibrio cholerae O139, which infects all O1 (classical and El Tor) and O139 strains tested. The sequence of the 7,542 nucleotides of the phage genome reveals that VGJφ has a distinctive region of 775 nucleotides and a conserved region with an overall genomic organization similar to that of previously characterized filamentous phages, such as CTXφ of V. cholerae and Ff phages of Escherichia coli . The conserved region carries 10 open reading frames (ORFs) coding for products homologous to previously reported peptides of other filamentous phages, and the distinctive region carries one ORF whose product is not homologous to any known peptide. VGJφ, like other filamentous phages, uses a type IV pilus to infect V. cholerae ; in this case, the pilus is the mannose-sensitive hemagglutinin. VGJφ-infected V. cholerae overexpresses the product of one ORF of the phage (ORF112), which is similar to single-stranded DNA binding proteins of other filamentous phages. Once inside a cell, VGJφ is able to integrate its genome into the same chromosomal attB site as CTXφ, entering into a lysogenic state. Additionally, we found an attP structure in VGJφ, which is also conserved in several lysogenic filamentous phages from different bacterial hosts. Finally, since different filamentous phages seem to integrate into the bacterial dif locus by a general mechanism, we propose a model in which repeated integration events with different phages might have contributed to the evolution of the CTX chromosomal region in V. cholerae El Tor.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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5. Filamentous Bacteriophages of Vibrio parahaemolyticus as a Possible Clue to Genetic Transmission

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