Affiliation:
1. Bacterial Pathogenesis Research Group, Department of Microbiology, Monash University, Clayton, Victoria 3800, Australia
Abstract
ABSTRACT
Lipopolysaccharide (LPS) is a key antigen in immunity to leptospirosis. Its biosynthesis requires enzymes for the biosynthesis and polymerization of nucleotide sugars and the transport through and attachment to the bacterial membrane. The genes encoding these functions are commonly clustered into loci; for
Leptospira borgpetersenii
serovar Hardjo subtype Hardjobovis, this locus, named
rfb
, spans 36.7 kb and contains 31 open reading frames, of which 28 have been assigned putative functions on the basis of sequence similarity. Characterization of the function of these genes is hindered by the fact that it is not possible to construct isogenic mutant strains in
Leptospira
. We used two approaches to circumvent this problem. The first was to clone the entire locus into a heterologous host system and determine if a “recombinant” LPS or polysaccharide was synthesized in the new host. The second approach used putative functions to identify mutants in other bacterial species whose mutations might be complemented by genes on the leptospiral
rfb
locus. This approach was used to investigate the function of three genes in the leptospiral
rfb
locus and demonstrated function for
orfH10
, which complemented a
wbpM
strain of
Pseudomonas aeruginosa
, and
orfH13
, which complemented an
rfbW
strain of
Vibrio cholerae
. However, despite the similarity of OrfH11 to WecC, a
wecC
strain of
E. coli
was not complemented by
orfH11
. The predicted protein encoded by
orfH8
is similar to GalE from a number of organisms. A
Salmonella enterica
serovar Typhimurium strain producing no GalE was used as a background in which
orfH8
produced detectable GalE enzyme activity.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Immunology,Microbiology,Parasitology
Cited by
18 articles.
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