The irp2 gene, coding for a 190-kDa iron-regulated protein (HMWP2), and the hemin storage locus (hms), which determines Yersinia pestis pigmentation, are each located on a large chromosomal fragment which carries virulence genes and deletes spontaneously. To determine whether the two loci are located on one unstable fragment or on two different excisable DNA segments, the pigmentation status and the presence of irp2 in 43 strains of Y. pestis isolated in various parts of the world were examined. Three different types were observed: Pgm+ Irp2+ (39.5%), Pgm- Irp2- (44.2%), and Pgm- Irp2+ (16.3%). No Pgm+ Irp2- strain was found. These three types were also recovered in vitro from the parental strain Saigon 55-12-39 (Pgm+ Irp2+), but again, no Pgm+ Irp2- colony was observed. Pgm- Irp2- derivatives were obtained from a single Pgm- Irp2+ colony, indicating sequential loss of the two traits. The fact that the genomic SpeI restriction patterns obtained by pulsed-field gel electrophoresis were specific for each of the three variants suggested that distinct large-scale chromosomal rearrangements had occurred in the Pgm- Irp2+ and Pgm- Irp2- derivatives. The virulence of Pgm- Irp2+ bacteria in mice was ca. 10(7)-fold lower than that of the Pgm+ Irp2+ strains injected subcutaneously but was not significantly decreased when injected intravenously. In contrast, the Pgm- Irp2- microorganisms were markedly less pathogenic (10(6)-fold) than the Pgm+ Irp2+ strains injected intravenously and were 100 times less virulent than the Pgm- Irp2+ strains injected subcutaneously.
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http://dx.doi.org/10.1128/iai.61.6.2717-2722.1993 | DOI Listing |
Chemistry
August 2021
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, 430070, P. R. China.
Pt-group metal (PGM) electrocatalysts with unique electronic structures and irreplaceable comprehensive properties play crucial roles in electrocatalysis. Anion engineering can create a series of PGM compounds (such as RuP , IrP , PtP , RuB , Ru B , RuS , etc.) that provide a promising prospect for improving the electrocatalytic performance and use of Pt-group noble metals.
View Article and Find Full Text PDFMol Cell Probes
July 2015
Diagnostic Systems Division, US Army Medical Research Institute of Infectious Diseases, Fort Detrick, MD, USA. Electronic address:
Virulent isolates of three pathogenic Yersinia species (Yersinia pestis, Yersinia pseudotuberculosis, and Yersinia enterocolitica) harbor a 102-kb chromosomal region which encodes elements critical for virulence. A 35-kb high pathogenicity island is contained in this region, is a known virulence determinant, contains irp1 and irp2 iron-regulating genes. An additional segment, the 68-kb high pathogenicity island, contains genetic elements responsible for conferring the Y.
View Article and Find Full Text PDFMol Gen Mikrobiol Virusol
May 2003
Research Institute for Plague Control, Rostov-on-Don.
Wild-type strains of plague agent Yersinia pestis are characterized by a pigmentation phenotype (Pgm+), which includes several traits: an ability of cells to adsorb pigments (Hms+), an ability to produce siderophore yersiniabactin (Ybt+) and an ability to cause lethal infections in laboratory animals (Vir+) after subcutaneous injections. All these traits are encoded in the chromosomal pgm-locus, which gets rapidly lost due to deletion. One more trait related with the Pgm+ phenotype was detected in the present study, i.
View Article and Find Full Text PDFJ Bacteriol
May 1998
Unité de Bactériologie Moléculaire et Médicale, Laboratoire des Yersinia, Institut Pasteur, Paris, France.
Several pathogenicity islands have recently been identified in different bacterial species, including a high-pathogenicity island (HPI) in Yersinia enterocolitica 1B. In Y. pestis, a 102-kb chromosomal fragment (pgm locus) that carries genes involved in iron acquisition and colony pigmentation can be deleted en bloc.
View Article and Find Full Text PDFInfect Immun
May 1997
Department of Microbiology and Immunology, University of Kentucky, Lexington 40536-0084, USA.
We have identified an approximately 22-kb region of the pgm locus of Yersinia pestis KIM6+ which encodes a number of iron-regulated proteins involved in the biosynthesis of the Y. pestis cognate siderophore, yersiniabactin (Ybt), and which is located immediately upstream of the pesticin/yersiniabactin receptor gene (psn). Sequence analysis and the construction of insertion and deletion mutants allowed us to determine the putative location of the irp1 gene and the positions of irp2, ybtT, and ybtE within the ybt operon.
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