Brucella melitensis
Triggers Time-Dependent Modulation of Apoptosis and Down-Regulation of Mitochondrion-Associated Gene Expression in Mouse Macrophages
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Published:2006-09
Issue:9
Volume:74
Page:5035-5046
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ISSN:0019-9567
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Container-title:Infection and Immunity
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language:en
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Short-container-title:Infect Immun
Author:
He Yongqun1, Reichow Sherry2, Ramamoorthy Sheela3, Ding Xicheng3, Lathigra Raju4, Craig Johanna C.5, Sobral Bruno W. S.5, Schurig Gerhardt G.3, Sriranganathan Nammalwar3, Boyle Stephen M.3
Affiliation:
1. Unit for Laboratory Animal Medicine and Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan 48109 2. Analytical Services Inc., 2900 South Quincy Street, Homeland Security Institute, Arlington, Virginia 22206 3. Virginia-Maryland Regional College of Veterinary Medicine, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061 4. Department of Bacterial Diseases, Walter Reed Army Institute of Research, 503 Robert Grant Avenue, Silver Spring, Maryland 20910 5. Virginia Bioinformatics Institute, Virginia Polytechnic Institute and State University, Washington Street, Blacksburg, Virginia 24061
Abstract
ABSTRACT
Brucella
spp. are facultative intracellular bacteria that cause brucellosis in humans and other animals.
Brucella
spp. are taken up by macrophages, and the outcome of the macrophage-
Brucella
interaction is a basis for establishment of a chronic
Brucella
infection. Microarrays were used to analyze the transcriptional response of the murine macrophage-like J774.A1 cell line to infection with virulent
Brucella melitensis
strain 16M. It was found that most significant changes in macrophage gene transcription happened early following infection, and global macrophage gene expression profiles returned to normal between 24 and 48 h postinfection. These findings support the observation that macrophages kill the majority of
Brucella
cells at the early infection stage, but the surviving
Brucella
cells are able to avoid macrophage brucellacidal activity inside replicative phagosomes at the later infection stage. At 4 h postinfection, macrophage genes involved in cell growth, metabolism, and responses to endogenous stimuli were down-regulated, while the inflammatory response (e.g., tumor necrosis factor alpha and Toll-like receptor 2), the complement system, the responses to external stimuli, and other immune responses were up-regulated. It is likely that the most active brucellacidal activity happened between 0 and 4 h postinfection. Mitochondrion-associated gene expression, which is involved in protein synthesis and transport, electron transfer, and small-molecule transfer, and many other mitochondrial functions were significantly down-regulated at 4 h postinfection. Although there were both pro- and antiapoptosis effects,
B. melitensis
16M appears to inhibit apoptosis of macrophages by blocking release of cytochrome
c
and production of reactive oxygen species in the mitochondria, thus preventing activation of caspase cascades.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Immunology,Microbiology,Parasitology
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