Related Experiment Videos
Phospholipase A of Yersinia enterocolitica contributes to pathogenesis in a mouse model
D H Schmiel1, E Wagar, L Karamanou
1Department of Microbiology and Molecular Genetics, University of California, Los Angeles, CA 90095, USA.
Abstract:
Some isolates of Yersinia enterocolitica exhibit phospholipase activity, which has been linked to lecithin-dependent hemolysis (M. Tsubokura, K. Otsoki, I. Shimohira, and H. Yamamoto, Infect. Immun. 25:939-942, 1979). A gene encoding Y. enterocolitica phospholipase was identified, and analysis of the nucleotide sequence revealed two tandemly transcribed open reading frames. The first, yplA, has 74% identity and 85% similarity to the phospholipase A found in Serratia liquefaciens. Though the other, yplB, was less similar to the downstream accessory protein found in S. liquefaciens, the organization in both species is similar. Subsequently, a yplA-null Y. enterocolitica strain, YEDS10, was constructed and demonstrated to be phospholipase negative by plate and spectrophotometric assays. To ascertain whether the phospholipase has a role in pathogenesis, YEDS10 was tested in the mouse model. In experiments with perorally infected BALB/c mice, fewer YEDS10 organisms were recovered from the mesenteric lymph nodes and Peyer's patches (PP) than the parental strain at 3 or 5 days postinfection. Furthermore, bowel tissue and PP infected with YEDS10 appeared to be less inflamed than those infected with the parental strain. When extremely high doses of both the parental and YEDS10 strains were given, similar numbers of viable bacteria were recovered from the PP and mesenteric lymph nodes on day 3. However, the numbers of foci and the extent of inflammation and necrosis within them were noticeably less for YEDS10 compared to the parental strain. Together these findings suggest that Y. enterocolitica produces a phospholipase A which has a role in pathogenesis.
Insights
Yersinia enterocolitica phospholipase A contributes to pathogenesis by increasing bacterial recovery and inflammation in mouse models. Deleting the phospholipase gene reduced disease severity, indicating its role in infection.
Area of Science:
- Microbiology
- Pathogenesis
- Molecular Biology
Background:
- Yersinia enterocolitica can exhibit phospholipase activity, linked to lecithin-dependent hemolysis.
- A gene encoding Y. enterocolitica phospholipase (yplA) was identified, showing similarity to Serratia liquefaciens phospholipase A.
Purpose of the Study:
- To investigate the role of Y. enterocolitica phospholipase A in pathogenesis.
- To construct and characterize a phospholipase-deficient Y. enterocolitica strain.
Main Methods:
- Nucleotide sequence analysis of the phospholipase gene (yplA).
- Construction of a yplA-null mutant (YEDS10) and verification of phospholipase deficiency.
- Infection of BALB/c mice with parental and YEDS10 strains, followed by bacterial recovery and histopathological analysis.
Main Results:
- The yplA-null mutant YEDS10 was confirmed to be phospholipase negative.
- Fewer YEDS10 organisms were recovered from mesenteric lymph nodes and Peyer's patches (PP) compared to the parental strain.
- Mice infected with YEDS10 showed reduced inflammation and necrosis in bowel tissue and PP.
Conclusions:
- Yersinia enterocolitica phospholipase A plays a role in the pathogenesis of infection.
- The phospholipase contributes to bacterial colonization and the induction of inflammatory responses.