-
Characterization of the rat pneumonic plague model: infection kinetics following aerosolization of Yersinia pestis CO92.
Microbes Infect. 2009 Feb;11(2):205-14
PMID: 19073275
-
Cytokine-mediated activation of macrophages from Mycobacterium bovis BCG-resistant and -susceptible mice: differential effects of corticosterone on antimycobacterial activity and expression of the Bcg gene (Candidate Nramp).
Infect Immun. 1995 Aug;63(8):2983-8
PMID: 7622220
-
A plasminogen-activating protease specifically controls the development of primary pneumonic plague.
Science. 2007 Jan 26;315(5811):509-13
PMID: 17255510
-
Yersinia pestis TonB: role in iron, heme, and hemoprotein utilization.
Infect Immun. 2003 Jul;71(7):4159-62
PMID: 12819108
-
Plague as a biological weapon: medical and public health management. Working Group on Civilian Biodefense.
JAMA. 2000 May 3;283(17):2281-90
PMID: 10807389
-
The iron-responsive Fur regulon in Yersinia pestis.
J Bacteriol. 2008 Apr;190(8):3063-75
PMID: 18281395
-
Acquisition of Mn(II) in addition to Fe(II) is required for full virulence of Salmonella enterica serovar Typhimurium.
Infect Immun. 2002 Nov;70(11):6032-42
PMID: 12379679
-
Sequence analysis and expression of Nramp-1 gene in Bcgr and Bcgs mice.
J Vet Med Sci. 1999 Jun;61(6):717-20
PMID: 10423700
-
Current trends in plague research: from genomics to virulence.
Clin Med Res. 2006 Sep;4(3):189-99
PMID: 16988099
-
Association between virulence of Yersinia pestis and suppression of gamma interferon and tumor necrosis factor alpha.
Infect Immun. 1993 Jan;61(1):23-31
PMID: 8418045
-
Natural resistance to intracellular infections: natural resistance-associated macrophage protein 1 (Nramp1) functions as a pH-dependent manganese transporter at the phagosomal membrane.
J Exp Med. 2000 Nov 6;192(9):1237-48
PMID: 11067873
-
Kinetics of disease progression and host response in a rat model of bubonic plague.
Am J Pathol. 2005 May;166(5):1427-39
PMID: 15855643
-
The Yfe system of Yersinia pestis transports iron and manganese and is required for full virulence of plague.
Mol Microbiol. 1999 Apr;32(2):403-14
PMID: 10231495
-
Insights into the evolution of Yersinia pestis through whole-genome comparison with Yersinia pseudotuberculosis.
Proc Natl Acad Sci U S A. 2004 Sep 21;101(38):13826-31
PMID: 15358858
-
Natural history of plague: perspectives from more than a century of research.
Annu Rev Entomol. 2005;50:505-28
PMID: 15471529
-
Progression of primary pneumonic plague: a mouse model of infection, pathology, and bacterial transcriptional activity.
Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17786-91
PMID: 16306265
-
Biodefence on the research agenda.
Nature. 2003 Feb 20;421(6925):787
PMID: 12594484
-
Yersinia pestis V protein epitopes recognized by CD4 T cells.
Infect Immun. 2005 Apr;73(4):2197-204
PMID: 15784563
-
Differential clearance and host-pathogen interactions of YopE- and YopK- YopL- Yersinia pestis in BALB/c mice.
Infect Immun. 1989 Apr;57(4):1200-10
PMID: 2925246
-
Determination of the virulence of the pigmentation-deficient and pigmentation-/plasminogen activator-deficient strains of Yersinia pestis in non-human primate and mouse models of pneumonic plague.
Vaccine. 2002 May 22;20(17-18):2206-14
PMID: 12009274
-
Multidrug resistance in Yersinia pestis mediated by a transferable plasmid.
N Engl J Med. 1997 Sep 4;337(10):677-80
PMID: 9278464
-
Antibodies and cytokines independently protect against pneumonic plague.
Vaccine. 2008 Dec 9;26(52):6901-7
PMID: 18926869
-
High-frequency RecA-dependent and -independent mechanisms of Congo red binding mutations in Yersinia pestis.
J Bacteriol. 1999 Aug;181(16):4896-904
PMID: 10438760
-
Delayed inflammatory response to primary pneumonic plague occurs in both outbred and inbred mice.
Infect Immun. 2007 Feb;75(2):697-705
PMID: 17101642
-
Loss of the pigmentation phenotype in Yersinia pestis is due to the spontaneous deletion of 102 kb of chromosomal DNA which is flanked by a repetitive element.
Mol Microbiol. 1992 Sep;6(18):2693-704
PMID: 1447977
-
The virulence-enhancing effect of iron on nonpigmented mutants of virulent strains of Pasteurella pestis.
Br J Exp Pathol. 1956 Dec;37(6):577-83
PMID: 13396142
-
High-frequency conjugative transfer of antibiotic resistance genes to Yersinia pestis in the flea midgut.
Mol Microbiol. 2002 Oct;46(2):349-54
PMID: 12406213
-
Replication of Yersinia pestis in interferon gamma-activated macrophages requires ripA, a gene encoded in the pigmentation locus.
Proc Natl Acad Sci U S A. 2005 Sep 6;102(36):12909-14
PMID: 16120681
-
Congo red-agar plating medium for detecting pigmentation in Pasteurella pestis.
Appl Microbiol. 1969 Nov;18(5):834-7
PMID: 5370459
-
Chromosomal irp2 gene in Yersinia: distribution, expression, deletion and impact on virulence.
Microb Pathog. 1993 Jan;14(1):9-21
PMID: 8321119
-
Hierarchy of iron uptake systems: Yfu and Yiu are functional in Yersinia pestis.
Infect Immun. 2006 Nov;74(11):6171-8
PMID: 16954402
-
Prevalence of the "high-pathogenicity island" of Yersinia species among Escherichia coli strains that are pathogenic to humans.
Infect Immun. 1998 Feb;66(2):480-5
PMID: 9453599
-
Pathology of experimental pneumonic plague produced by fraction 1-positive and fraction 1-negative Yersinia pestis in African green monkeys (Cercopithecus aethiops).
Arch Pathol Lab Med. 1996 Feb;120(2):156-63
PMID: 8712895
-
Transcriptome analysis of Yersinia pestis in human plasma: an approach for discovering bacterial genes involved in septicaemic plague.
Microbiology (Reading). 2007 Sep;153(Pt 9):3112-3124
PMID: 17768254
-
Transmission of Yersinia pestis from an infectious biofilm in the flea vector.
J Infect Dis. 2004 Aug 15;190(4):783-92
PMID: 15272407
-
Plague bacteria target immune cells during infection.
Science. 2005 Sep 9;309(5741):1739-41
PMID: 16051750
-
Pneumonic plague pathogenesis and immunity in Brown Norway rats.
Am J Pathol. 2009 Mar;174(3):910-21
PMID: 19164505
-
LcrV plague vaccine with altered immunomodulatory properties.
Infect Immun. 2005 Aug;73(8):5152-9
PMID: 16041032
-
Studies on the role of plasminogen activator in systemic infection by virulent Yersinia pestis strain C092.
Microb Pathog. 1997 Oct;23(4):211-23
PMID: 9344782
-
Gamma interferon, tumor necrosis factor alpha, and nitric oxide synthase 2, key elements of cellular immunity, perform critical protective functions during humoral defense against lethal pulmonary Yersinia pestis infection.
Infect Immun. 2006 Jun;74(6):3381-6
PMID: 16714568
-
The 102-kilobase unstable region of Yersinia pestis comprises a high-pathogenicity island linked to a pigmentation segment which undergoes internal rearrangement.
J Bacteriol. 1998 May;180(9):2321-9
PMID: 9573181
-
The Bcg/Ity/Lsh locus: genetic transfer of resistance to infections in C57BL/6J mice transgenic for the Nramp1 Gly169 allele.
Infect Immun. 1996 Aug;64(8):2923-9
PMID: 8757814
-
Vaccination with live Yersinia pestis primes CD4 and CD8 T cells that synergistically protect against lethal pulmonary Y. pestis infection.
Infect Immun. 2007 Feb;75(2):878-85
PMID: 17118978
-
Genetic organization of the yersiniabactin biosynthetic region and construction of avirulent mutants in Yersinia pestis.
Infect Immun. 1997 May;65(5):1659-68
PMID: 9125544
-
Temperature regulation of the hemin storage (Hms+) phenotype of Yersinia pestis is posttranscriptional.
J Bacteriol. 2004 Mar;186(6):1638-47
PMID: 14996794
-
Transferable plasmid-mediated resistance to streptomycin in a clinical isolate of Yersinia pestis.
Emerg Infect Dis. 2001 Jan-Feb;7(1):43-8
PMID: 11266293
-
Immunogenicity and protective immunity against bubonic plague and pneumonic plague by immunization of mice with the recombinant V10 antigen, a variant of LcrV.
Infect Immun. 2006 Aug;74(8):4910-4
PMID: 16861680
-
Mice naturally resistant to Yersinia pestis Delta pgm strains commonly used in pathogenicity studies.
Infect Immun. 2006 Nov;74(11):6501-4
PMID: 16954401
-
Pasteurella pestis: Role of Pesticin I and Iron in Experimental Plague.
Science. 1965 Jul 23;149(3682):422-4
PMID: 17809405