Abstract
Smallpox has played an unparalleled role in human history and remains a significant potential threat to public health. Despite the historical significance of this disease, we know little about the underlying pathophysiology or the virulence mechanisms of the causative agent, variola virus. To improve our understanding of variola pathogenesis and variola-host interactions, we examined the molecular and cellular features of hemorrhagic smallpox in cynomolgus macaques. We used cDNA microarrays to analyze host gene expression patterns in sequential blood samples from each of 22 infected animals. Variola infection elicited striking and temporally coordinated patterns of gene expression in peripheral blood. Of particular interest were features that appear to represent an IFN response, cell proliferation, immunoglobulin gene expression, viral dose-dependent gene expression patterns, and viral modulation of the host immune response. The virtual absence of a tumor necrosis factor alpha/NF-kappaB-activated transcriptional program in the face of an overwhelming systemic infection suggests that variola gene products may ablate this response. These results provide a detailed picture of the host transcriptional response during smallpox infection, and may help guide the development of diagnostic, therapeutic, and prophylactic strategies.
MeSH Terms
Animals
Blood Cells/immunology,metabolism,pathology
Cell Cycle
Cell Division
Disease Models, Animal
Gene Expression Profiling
Interferons/genetics
Lymphocytes/immunology,metabolism,pathology
Macaca fascicularis
NF-kappa B/blood
Oligonucleotide Array Sequence Analysis
Smallpox/blood,genetics,immunology
Tumor Necrosis Factor-alpha/metabolism
Chemicals
NF-kappa B
Tumor Necrosis Factor-alpha
Interferons
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Rubins Kathleen H
Department of Microbiology and Immunology, Stanford University, Stanford, CA 94305, USA.
Hensley Lisa E
Jahrling Peter B
Whitney Adeline R
Geisbert Thomas W
Huggins John W
Owen Art
Leduc James W
Brown Patrick O
Relman David A
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