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[Study of PGM mutation mechanism in Yersinia pestis (plague pathogen) vaccine strain EV76]
O N Podladchikova1, V A Rykova, V S Ivanova
1Institute for Plague Control, Rostov-on-Don.
Abstract:
Yersinia pestis vaccine strain EV76 is a mutant of the virulent strain which has lost the pigmentation phenotype (Pgm+). This phenotype includes three characteristics: it absorbs pigments from agar media (Hms+), produces a siderophore yersiniabactin (Ybt+), and causes a lethal disease after subcutaneous inoculation of laboratory animals (Vir+). These characteristics are lost simultaneously after high frequency spontaneous deletion of 10 kB fragment of chromosomal DNA, termed the pgm locus. We compared the pgm locus-associated genetic and phenotypical properties of the vaccine strain with those of a typical Pgm- deletion mutant of a virulent strain. The results indicate that Pgm- phenotype of the vaccine strain results not from the deletion of the pgm locus, but from the insertion inactivation of the genes located in this locus. In contrast to the deletion mutant, the vaccine strain carries sequences detected by hybridization and PCR, which are complementary to the pgm locus genes. Moreover, the vaccine strain differed from the deletion mutant by a low level of Hms+ expression, a slower rate of cell death under iron-chelated conditions at 37 degrees C, "residual virulence" upon subcutaneous inoculation, and capacity to form revertants which restore the characteristics of Pgm+ phenotype after cell growth at 12 degrees C.
Insights
The Yersinia pestis vaccine strain EV76
Area of Science:
- Microbiology
- Bacteriology
- Vaccine Development
Background:
- Yersinia pestis is a bacterium that causes plague.
- The pigmentation phenotype (Pgm+) is associated with virulence.
- The EV76 vaccine strain is a Pgm- mutant.
Purpose of the Study:
- To compare the genetic and phenotypic properties of Yersinia pestis vaccine strain EV76 with a typical Pgm- deletion mutant.
- To elucidate the mechanism behind the Pgm- phenotype in the EV76 vaccine strain.
Main Methods:
- Comparative analysis of genetic and phenotypic characteristics.
- Hybridization and PCR to detect pgm locus genes.
- Assessment of Hms+ expression, cell death rates, and virulence in animal models.
Main Results:
- The EV76 vaccine strain's Pgm- phenotype results from insertion inactivation, not deletion, of pgm locus genes.
- EV76 retains sequences complementary to pgm locus genes, unlike deletion mutants.
- EV76 exhibits residual virulence and capacity for reversion to Pgm+ phenotype.
Conclusions:
- The EV76 vaccine strain's attenuation is due to gene inactivation within the pgm locus, not deletion.
- Understanding these genetic differences is crucial for vaccine efficacy and safety.
- The EV76 strain's potential for reversion warrants further investigation.
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