Affiliation:
1. Department of Microbiology, Moyne Institute of Preventive Medicine, Trinity College, Dublin 2, Ireland
Abstract
ABSTRACT
Staphylococcus epidermidis
ATCC 14990 produces a wall-associated glycerol teichoic acid which is chemically identical to the major wall-associated teichoic acid of
Bacillus subtilis
168. The
S. epidermidis tagF
gene was cloned from genomic DNA and sequenced. When introduced on a plasmid vector into
B. subtilis
1A486 carrying the conditionally lethal temperature-sensitive mutation
tagF1
(
rodC1
), it expressed an 85-kDa protein which allowed colonies to grow at the restrictive temperature. This showed that the cloned
S. epidermidis
gene encodes a functional CDP-glycerol:poly(glycerophosphate) glycerophosphotransferase. An amino acid substitution at residue 616 in the recombinant TagF protein eliminated complementation. Unlike
B. subtilis
, where the
tagF
gene is part of the
tagDEF
operon, the
tagF
gene of
S. epidermidis
is not linked to any other
tag
genes. We attempted to disrupt the chromosomal
tagF
gene in
S. epidermidis
TU3298 by directed integration of a temperature-sensitive plasmid but this failed, whereas a control plasmid containing the 5′ end of
tagF
on a similarly sized DNA fragment was able to integrate. This suggests that the
tagF
gene is essential and that the TagF and other enzymes involved in teichoic acid biosynthesis could be targets for new antistaphylococcal drugs.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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