Genetic Evidence for an Interferon-Antagonistic Function of Rift Valley Fever Virus Nonstructural Protein NSs
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- 1 February 2001
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 75 (3) , 1371-7
- https://doi.org/10.1128/jvi.75.3.1371-1377.2001
Abstract
Rift Valley fever virus (RVFV), a phlebovirus of the family Bunyaviridae, is a major public health threat in Egypt and sub-Saharan Africa. The viral and host cellular factors that contribute to RVFV virulence and pathogenicity are still poorly understood. All pathogenic RVFV strains direct the synthesis of a nonstructural phosphoprotein (NSs) that is encoded by the smallest (S) segment of the tripartite genome and has an undefined accessory function. In this report, we show that MP12 and clone 13, two attenuated RVFV strains with mutations in the NSs gene, were highly virulent in IFNAR(-/-) mice lacking the alpha/beta interferon (IFN-alpha/beta) receptor but remained attenuated in IFN-gamma receptor-deficient mice. Both attenuated strains proved to be excellent inducers of early IFN-alpha/beta production. In contrast, the virulent strain ZH548 failed to induce detectable amounts of IFN-alpha/beta and replicated extensively in both IFN-competent and IFN-deficient mice. Clone 13 has a defective NSs gene with a large in-frame deletion. This defect in the NSs gene results in expression of a truncated protein which is rapidly degraded. To investigate whether the presence of the wild-type NSs gene correlated with inhibition of IFN-alpha/beta production, we infected susceptible IFNAR(-/-) mice with S gene reassortant viruses. When the S segment of ZH548 was replaced by that of clone 13, the resulting reassortants became strong IFN inducers. When the defective S segment of clone 13 was exchanged with the wild-type S segment of ZH548, the reassortant virus lost the capacity to stimulate IFN-alpha/beta production. These results demonstrate that the ability of RVFV to inhibit IFN-alpha/beta production correlates with viral virulence and suggest that the accessory protein NSs is an IFN antagonist.Keywords
This publication has 52 references indexed in Scilit:
- Inhibition of Nuclear Factor κB Activation by a Virus-encoded IκB-like ProteinJournal of Biological Chemistry, 1998
- When Two Strands Are Better Than One: The Mediators and Modulators of the Cellular Responses to Double-Stranded RNAVirology, 1996
- Functional Role of Type I and Type II Interferons in Antiviral DefenseScience, 1994
- Immune Response in Mice that Lack the Interferon-γ ReceptorScience, 1993
- In situ analysis of proteolipid protein gene transcripts during persistent Theiler's virus infection.Journal of Histochemistry & Cytochemistry, 1991
- Pathogenesis of Rift Valley fever in rhesus monkeys: role of interferon responseArchiv für die gesamte Virusforschung, 1990
- Use of reassortant viruses to map attenuating and temperature-sensitive mutations of the Rift Valley fever virus MP-12 vaccineVaccine, 1990
- Prevention of Rift Valley Fever in Rhesus Monkeys with Interferon-αClinical Infectious Diseases, 1989
- A Recombinant Human Interferon- B/D Hybrid with a Broad Host-rangeJournal of General Virology, 1987
- Mutagen-directed Attenuation of Rift Valley Fever Virus as a Method for Vaccine DevelopmentJournal of General Virology, 1985