Heterologous Expression of Thuricin CD Immunity Genes in Listeria monocytogenes
Author(s) -
Harsh Mathur,
Paula M. O’Connor,
Paul D. Cotter,
Colin Hill,
R. Paul Ross
Publication year - 2014
Publication title -
antimicrobial agents and chemotherapy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.07
H-Index - 259
eISSN - 1070-6283
pISSN - 0066-4804
DOI - 10.1128/aac.00090-14
Subject(s) - bacteriocin , biology , immunity , atp binding cassette transporter , heterologous , listeria monocytogenes , lantibiotics , gene , open reading frame , heterologous expression , microbiology and biotechnology , listeria , genetics , bacteria , transporter , immune system , peptide sequence , antimicrobial , recombinant dna
Bacteriocins are ribosomally synthesized peptides that can have a narrow or broad spectrum of antimicrobial activity. Bacteriocin producers typically possess dedicated immunity systems that often consist of an ATP-binding cassette (ABC) transporter system and/or a dedicated immunity protein. Here we investigated the genes responsible for immunity to thuricin CD, a narrow-spectrum two-peptide sactibiotic produced byBacillus thuringiensis DPC6431. Heterologous expression of putative thuricin CD immunity determinants allowed us to identify and investigate the relative importance of the individual genes and gene products that contribute to thuricin CD immunity. We established that TrnF and TrnG are the individual components of an ABC transporter system that provides immunity to thuricin CD. We also identified a hitherto overlooked open reading frame located upstream oftrnF predicted to encode a 79-amino-acid transmembrane protein. We designated this newly discovered genetrnI and established that TrnI alone can provide protection against thuricin CD.
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