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The ail locus is found uniquely in Yersinia enterocolitica serotypes commonly associated with disease
V L Miller1, J J Farmer, W E Hill
1Department of Medical Microbiology, Stanford University, California 94305.
Abstract:
Yersinia enterocolitica is a heterogeneous group of organisms with more than 50 serotypes and several biotypes. Only a few of these serotypes cause gastrointestinal disease in otherwise healthy hosts; these serotypes are the pathogenic serotypes. Although Y. enterocolitica requires a high-molecular-weight plasmid to cause disease, chromosome-encoded determinants are required for the full expression of virulence. The ability of Yersinia spp. to invade eucaryotic cells is thought to be a virulence factor, because nonpathogenic serotypes are noninvasive in animals and in tissue culture cell models. Current evidence indicates that invasion ability is chromosome encoded. We recently reported cloning two loci, inv and ail, from Y. enterocolitica O8 strain 8081c that allow Escherichia coli to invade tissue culture cells. We investigated the link between invasion in an in vitro tissue culture invasion (TCI) model and hybridization to probes derived from the two invasion loci, inv and ail. We examined 177 Yersinia strains. Strains of serotypes and species associated with disease were TCI+, whereas strains of serotypes and species not associated with disease were TCI-. Only TCI+ strains had DNA homologous to probes derived from ail. All strains (TCI+ and TCI-) had DNA homologous to probes derived from inv, but there were certain restriction fragment-linked polymorphisms that were associated primarily with TCI+ strains. These observations held true for strains epidemiologically associated with disease. Both the inv and ail loci were found to be clearly located on the chromosome. No other genera, including other invasive organisms, had DNA homologous to inv or ail. These data support the hypothesis that the ail locus encodes a Y. enterocolitica invasion factor that may be involved in pathogenesis.
Insights
The ail locus on the Yersinia enterocolitica chromosome is crucial for bacterial invasion of host cells, distinguishing pathogenic strains from nonpathogenic ones. This invasion factor may play a key role in causing gastrointestinal disease.
Area of Science:
- Microbiology
- Pathogenesis
- Molecular Biology
Background:
- Yersinia enterocolitica causes gastrointestinal disease, with virulence dependent on both plasmid and chromosomal factors.
- Bacterial invasion of host cells is a key virulence mechanism in Yersinia spp.
- Previous research identified two chromosomal loci, inv and ail, involved in Yersinia invasion.
Purpose of the Study:
- To investigate the role of the inv and ail loci in Yersinia enterocolitica invasion.
- To correlate in vitro tissue culture invasion (TCI) ability with the presence of inv and ail DNA sequences.
- To determine if the ail locus is specifically associated with pathogenic Yersinia strains.
Main Methods:
- Examined 177 Yersinia strains using an in vitro tissue culture invasion (TCI) assay.
- Used DNA hybridization with probes derived from the inv and ail loci.
- Analyzed restriction fragment-linked polymorphisms within the inv locus.
Main Results:
- Pathogenic Yersinia strains were positive for tissue culture invasion (TCI+), while nonpathogenic strains were TCI-.
- Only TCI+ strains showed DNA homology to the ail locus probes.
- All strains hybridized to inv probes, but polymorphisms were linked to TCI+ strains.
- Both inv and ail loci were confirmed to be on the chromosome and specific to Yersinia.
Conclusions:
- The ail locus is strongly associated with the invasion capability of Yersinia enterocolitica.
- Ail likely encodes a Yersinia invasion factor contributing to pathogenesis.
- The inv and ail loci are chromosome-encoded virulence determinants specific to Yersinia.