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MERS-CoV Accessory ORFs Play Key Role for Infection and Pathogenesis

Authors :
Menachery, Vineet D.
Mitchell, Hugh D.
Cockrell, Adam S.
Gralinski, Lisa E.
Yount, Boyd L.
Graham, Rachel L.
McAnarney, Eileen T.
Douglas, Madeline G.
Scobey, Trevor
Beall, Anne
Dinnon, Kenneth
Kocher, Jacob F.
Hale, Andrew E.
Stratton, Kelly G.
Waters, Katrina M.
Baric, Ralph S.
Source :
mBio; July 2017, Vol. 8 Issue: 4
Publication Year :
2017

Abstract

ABSTRACTWhile dispensable for viral replication, coronavirus (CoV) accessory open reading frame (ORF) proteins often play critical roles during infection and pathogenesis. Utilizing a previously generated mutant, we demonstrate that the absence of all four Middle East respiratory syndrome CoV (MERS-CoV) accessory ORFs (deletion of ORF3, -4a, -4b, and -5 [dORF3-5]) has major implications for viral replication and pathogenesis. Importantly, attenuation of the dORF3-5 mutant is primarily driven by dysregulated host responses, including disrupted cell processes, augmented interferon (IFN) pathway activation, and robust inflammation. In vitroreplication attenuation also extends to in vivomodels, allowing use of dORF3-5 as a live attenuated vaccine platform. Finally, examination of ORF5 implicates a partial role in modulation of NF-κB-mediated inflammation. Together, the results demonstrate the importance of MERS-CoV accessory ORFs for pathogenesis and highlight them as potential targets for surveillance and therapeutic treatments moving forward.IMPORTANCEThe initial emergence and periodic outbreaks of MERS-CoV highlight a continuing threat posed by zoonotic pathogens to global public health. In these studies, mutant virus generation demonstrates the necessity of accessory ORFs in regard to MERS-CoV infection and pathogenesis. With this in mind, accessory ORF functions can be targeted for both therapeutic and vaccine treatments in response to MERS-CoV and related group 2C coronaviruses. In addition, disruption of accessory ORFs in parallel may offer a rapid response platform to attenuation of future emergent strains based on both SARS- and MERS-CoV accessory ORF mutants.

Details

Language :
English
ISSN :
21612129 and 21507511
Volume :
8
Issue :
4
Database :
Supplemental Index
Journal :
mBio
Publication Type :
Periodical
Accession number :
ejs43105045
Full Text :
https://doi.org/10.1128/mBio.00665-17