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Virulence and arsenic resistance in Yersiniae
1Microbial Pathogenesis Unit, International Institute of Cellular and Molecular Pathology, and Faculté de Médecine, Université Catholique deLouvain, Brussels, Belgium.
Abstract:
The genus Yersinia contains three pathogenic species: Yersinia pestis, Y. pseudotuberculosis, and Y. enterocolitica. Only a few biotypes and serotypes of Y. enterocolitica are pathogenic, and these form two distinct groups: some are of low virulence, and they are encountered worldwide; others, mainly encountered in North America, are markedly more virulent. All pathogenic yersiniae possess a 70-kb virulence plasmid called pYV which encodes secreted antihost proteins called Yops as well as a type III secretion machinery that is required for Yop secretion. Genes encoding Yop synthesis and secretion are tightly clustered in three quadrants of the pYV plasmid. We show here that in the low-virulence strains of Y. enterocolitica, the fourth quadrant of the plasmid contains a new class II transposon, Tn2502. This transposon encodes a defective transposase, but transposition can be complemented in trans by Tn2501, another class II transposon. Tn2502 was not detected in the pYV plasmids of the more virulent American strains of Y. enterocolitica, of Y. pseudotuberculosis, and of Y. pestis. Tn2502 confers arsenite and arsenate resistance. This resistance involves four genes; three are homologous to the arsRBC genes present on the Escherichia coli chromosome, but no homolog of the fourth one, arsH, has been found. The systematic presence of such a resistance operon on a virulence plasmid is unusual and could be related to the recent spread of low-virulence Y. enterocolitica strains. The presence of this ars operon also constitutes the first significant difference between the pYV plasmids from different Yersinia species.
Insights
A novel transposon, Tn2502, found on the virulence plasmid (pYV) of low-virulence Yersinia enterocolitica, confers arsenite and arsenate resistance. This finding distinguishes it from virulent strains and other Yersinia species.
Area of Science:
- Microbiology
- Genetics
- Molecular Biology
Background:
- The genus Yersinia includes three pathogenic species: Yersinia pestis, Y. pseudotuberculosis, and Y. enterocolitica.
- Pathogenic Yersinia strains possess a virulence plasmid (pYV) encoding Yops and type III secretion machinery for antihost functions.
Purpose of the Study:
- To investigate the genetic differences in virulence plasmids (pYV) among Yersinia species and strains.
- To characterize a newly identified genetic element in low-virulence Y. enterocolitica.
Main Methods:
- Plasmid analysis of Yersinia strains.
- Identification and characterization of transposons.
- Gene homology analysis.
Main Results:
- A new class II transposon, Tn2502, was identified in the pYV of low-virulence Y. enterocolitica strains.
- Tn2502 confers arsenite and arsenate resistance via four genes, including a novel arsH homolog.
- Tn2502 was absent in virulent Y. enterocolitica strains and other pathogenic Yersinia species.
Conclusions:
- Tn2502 represents a significant difference between pYV plasmids of different Yersinia species.
- The presence of the ars operon on a virulence plasmid is unusual and may contribute to the spread of low-virulence Y. enterocolitica strains.