Gene expression profiling of monkeypox virus-infected cells reveals novel interfaces for host-virus interactions
Open Access
- 28 July 2010
- journal article
- Published by Springer Nature in Virology Journal
- Vol. 7 (1) , 173
- https://doi.org/10.1186/1743-422x-7-173
Abstract
Monkeypox virus (MPV) is a zoonotic Orthopoxvirus and a potential biothreat agent that causes human disease with varying morbidity and mortality. Members of the Orthopoxvirus genus have been shown to suppress antiviral cell defenses, exploit host cell machinery, and delay infection-induced cell death. However, a comprehensive study of all host genes and virus-targeted host networks during infection is lacking. To better understand viral strategies adopted in manipulating routine host biology on global scale, we investigated the effect of MPV infection on Macaca mulatta kidney epithelial cells (MK2) using GeneChip rhesus macaque genome microarrays. Functional analysis of genes differentially expressed at 3 and 7 hours post infection showed distinctive regulation of canonical pathways and networks. While the majority of modulated histone-encoding genes exhibited sharp copy number increases, many of its transcription regulators were substantially suppressed; suggesting involvement of unknown viral factors in host histone expression. In agreement with known viral dependence on actin in motility, egress, and infection of adjacent cells, our results showed extensive regulation of genes usually involved in controlling actin expression dynamics. Similarly, a substantial ratio of genes contributing to cell cycle checkpoints exhibited concerted regulation that favors cell cycle progression in G1, S, G2 phases, but arrest cells in G2 phase and inhibits entry into mitosis. Moreover, the data showed that large number of infection-regulated genes is involved in molecular mechanisms characteristic of cancer canonical pathways. Interestingly, ten ion channels and transporters showed progressive suppression during the course of infection. Although the outcome of this unusual channel expression on cell osmotic homeostasis remains unknown, instability of cell osmotic balance and membrane potential has been implicated in intracellular pathogens egress. Our results highlight the role of histones, actin, cell cycle regulators, and ion channels in MPV infection, and propose these host functions as attractive research focal points in identifying novel drug intervention sites.Keywords
This publication has 116 references indexed in Scilit:
- Chromatin at the intersection of viral infection and DNA damageBiochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms, 2009
- SV40 DNA replication: From the A gene to a nanomachinePublished by Elsevier ,2008
- Comparative Analysis of Viral Gene Expression Programs during Poxvirus Infection: A Transcriptional Map of the Vaccinia and Monkeypox GenomesPLOS ONE, 2008
- Kinetic analysis of a complete poxvirus transcriptome reveals an immediate-early class of genesProceedings of the National Academy of Sciences, 2008
- Inhibition of Integrin-mediated Crosstalk with Epidermal Growth Factor Receptor/Erk or Src Signaling Pathways in Autophagic Prostate Epithelial Cells Induces Caspase-independent DeathMolecular Biology of the Cell, 2007
- Immune Cell Apoptosis Prevention as Potential Therapy for Severe InfectionsEmerging Infectious Diseases, 2007
- Large‐scale mapping of human protein–protein interactions by mass spectrometryMolecular Systems Biology, 2007
- Suppression of Neu-induced mammary tumor growth in cyclin D1 deficient mice is compensated for by cyclin EOncogene, 2002
- A novel, high conductance channel of mitochondria linked to apoptosis in mammalian cells and Bax expression in yeastThe Journal of cell biology, 2001
- Plaque assay of variola virus in a cynomolgus monkey kidney cell lineArchiv für die gesamte Virusforschung, 1970