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Molecular cloning, iron-regulation and mutagenesis of the irp2 gene encoding HMWP2, a protein specific for the highly
E Carniel1, A Guiyoule, I Guilvout
1Unité de Bactériologie Moléculaire et Médicale, Institut Pasteur, Paris, France.
Abstract:
Under iron-starvation, the highly pathogenic Yersinia synthesize several iron-regulated proteins including two high-molecular-weight polypeptides (HMWP1 and HMWP2). From the chromosome of Yersinia enterocolitica serovar O:8 (strain Ye 8081), the genes coding for the HMWP2 (irp2) and its promoter were cloned into plasmid pUC18 (pIR2) and used as a probe. We show here that the irp2 gene is present only in the highly pathogenic strains and that its promoter is iron-regulated in Escherichia coli. After introduction of the pIR2 plasmid into a fur mutant of E. coli, both the iron-starved and the iron-replete bacteria expressed the HMWP2. Repressibility of irp2 by iron was restored by introduction of a plasmid carrying the fur gene. These results demonstrate that the irp2 promoter is controlled by the Fur repressor in E. coli. Mutagenesis of the chromosomal irp2 gene of Yersinia pseudotuberculosis was obtained by homologous recombination with a 1 kb fragment of this gene cloned on the suicide plasmid pJM703.1. Inactivation of irp2 resulted in the non-expression of both HMWPs, while introduction of plasmid pIR2 into the mutant strain led to the synthesis of the HMWP2 only. Therefore, it is probable that the genes coding for the HMWPs constitute an operon where irp2 is upstream of irp1. When comparing the virulence of the wild-type strain and of its irp2 mutant derivative, we found that the 50% lethality (LD50) for mice of the mutant strain was increased, whatever the route of infection, but more markedly when injected parenterally. Accordingly, these data demonstrate that a mutation in the irp2 gene alters the pathogenicity of Y. pseudotuberculosis.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
The irp2 gene in Yersinia is crucial for producing high-molecular-weight polypeptides (HMWPs) and is regulated by iron. Inactivation of irp2 significantly increases Yersinia pathogenicity in mice.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Highly pathogenic Yersinia species synthesize iron-regulated proteins, including high-molecular-weight polypeptides (HMWP1 and HMWP2), under iron-starvation conditions.
- The gene for HMWP2 (irp2) and its promoter were isolated from Yersinia enterocolitica serovar O:8.
Purpose of the Study:
- To investigate the presence and iron-regulation of the irp2 gene in pathogenic Yersinia strains.
- To elucidate the role of the Fur repressor in controlling irp2 expression.
- To determine the impact of irp2 inactivation on Yersinia pathogenicity.
Main Methods:
- Cloning of the irp2 gene and its promoter into plasmid pUC18 (pIR2).
- Introduction of pIR2 into Escherichia coli, including a fur mutant, to study iron regulation and Fur repressor control.
- Homologous recombination using a suicide plasmid to mutagenize the chromosomal irp2 gene in Yersinia pseudotuberculosis.
- Virulence testing of wild-type and irp2 mutant strains in mice.
Main Results:
- The irp2 gene was found exclusively in highly pathogenic Yersinia strains.
- The irp2 promoter is iron-regulated in E. coli and controlled by the Fur repressor.
- Inactivation of irp2 in Y. pseudotuberculosis led to the non-expression of HMWPs and an increased LD50 in mice, indicating enhanced pathogenicity.
- The results suggest that irp2 and irp1 may form an operon with irp2 upstream.
Conclusions:
- The irp2 gene is a key determinant of pathogenicity in Yersinia, likely through its role in HMWP synthesis.
- Iron regulation via the Fur repressor is essential for controlling irp2 expression.
- The irp2 gene and its product play a significant role in the virulence of Yersinia species.