Affiliation:
1. Department of Molecular and Cell Biology
2. School of Public Health, University of California, Berkeley, California 94720-3202
Abstract
ABSTRACT
Two site-specific shuttle integration vectors were developed with two different chromosomal bacteriophage integration sites to facilitate strain construction in
Listeria monocytogenes
. The first vector, pPL1, utilizes the listeriophage U153 integrase and attachment site within the
comK
gene for chromosomal insertion. pPL1 contains a useful polylinker, can be directly conjugated from
Escherichia coli
into
L. monocytogenes
, forms stable, single-copy integrants at a frequency of ∼10
−4
per donor cell, and can be used in the
L. monocytogenes
1/2 and 4b serogroups. Methods for curing endogenous prophages from the
comK
attachment site in 10403S-derived strains were developed. pPL1 was used to introduce the
hly
and
actA
genes at
comK-attBB′
in deletion strains derived from 10403S and SLCC-5764. These strains were tested for second-site complementation in hemolysin assays, plaquing assays, and cell extract motility assays. Unlike plasmid-complemented strains, integrated pPL1-complemented strains were fully virulent in the mouse 50% lethal dose assay. Additionally, the PSA phage attachment site on the
L. monocytogenes
chromosome was characterized, and pPL1 was modified to integrate at this site. The listeriophage PSA integrates in the 3′ end of an arginine tRNA gene. There are 17 bp of DNA identity between the bacterial and phage attachment sites. The PSA prophage DNA sequence reconstitutes a complete tRNA
Arg
gene. The modified vector, pPL2, was integration proficient at the same frequency as pPL1 in common laboratory serotype 1/2 strains as well as serotype 4b strains.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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