Affiliation:
1. Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada
2. School of Clinical Veterinary Science, University of Bristol, Langford, Bristol, United Kingdom
3. Department of Biological Chemistry, John Innes Centre, Colney Lane, Norwich, United Kingdom
Abstract
ABSTRACT
Pseudomonas aeruginosa
and
Bordetella pertussis
produce lipopolysaccharide (LPS) that contains 2,3-diacetamido-2,3-dideoxy-
d
-mannuronic acid (
d
-ManNAc3NAcA). A five-enzyme biosynthetic pathway that requires WbpA, WbpB, WbpE, WbpD, and WbpI has been proposed for the production of this sugar in
P. aeruginosa
, based on analysis of genes present in the B-band LPS biosynthesis cluster. In the analogous
B. pertussis
cluster, homologs of
wbpB
to
wbpI
were present, but a putative dehydrogenase gene was missing; therefore, the biosynthetic mechanism for UDP-
d
-ManNAc3NAcA was unclear. Nonpolar knockout mutants of each
P. aeruginosa
gene were constructed. Complementation analysis of the mutants demonstrated that B-band LPS production was restored to
P. aeruginosa
knockout mutants when the relevant
B. pertussis
genes were supplied in
trans
. Thus, the genes that encode the putative oxidase, transaminase,
N
-acetyltransferase, and epimerase enzymes in
B. pertussis
are functional homologs of those in
P. aeruginosa
. Two candidate dehydrogenase genes were located by searching the
B. pertussis
genome; these have 80% identity to
P. aeruginosa wbpO
(serotype O6) and 32% identity to
wbpA
(serotype O5). These genes,
wbpO
1629
and
wbpO
3150
, were shown to complement a
wbpA
knockout of
P. aeruginosa
. Capillary electrophoresis was used to characterize the enzymatic activities of purified WbpO
1629
and WbpO
3150
, and mass spectrometry analysis confirmed that the two enzymes are dehydrogenases capable of converting UDP-
d
-GlcNAc, UDP-
d
-GalNAc, to a lesser extent, and UDP-
d
-Glc, to a much lesser extent. Together, these results suggest that
B. pertussis
produces UDP-
d
-ManNAc3NAcA through the same pathway proposed for
P. aeruginosa
, despite differences in the genomic context of the genes involved.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
28 articles.
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