Recombinant Marburg viruses containing mutations in the IID region of VP35 prevent inhibition of Host immune responses

被引:17
作者
Albarino, Cesar G. [1 ]
Guerrero, Lisa Wiggleton [1 ]
Spengler, Jessica R. [1 ]
Uebelhoer, Luke S. [1 ]
Chakrabarti, Ayan K. [1 ]
Nichol, Stuart T. [1 ]
Towner, Jonathan S. [1 ]
机构
[1] Ctr Dis Control & Prevent, Atlanta, GA 30333 USA
关键词
Filovirus; Marburg virus; Bat virus; VP35; IFN-antagonism; Central basic; Patch; Immune-modulatory; Ebola virus; DOUBLE-STRANDED-RNA; ZAIRE EBOLAVIRUS VP35; INTERFERON ANTAGONISM; HEMORRHAGIC-FEVER; RIG-I; EVASION MECHANISMS; IRF-3; ACTIVATION; STRUCTURAL BASIS; GUINEA-PIGS; PROTEIN;
D O I
10.1016/j.virol.2014.12.002
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Previous in vitro studies have demonstrated that Ebola and Marburg virus (EBOV and MARV) VP35 antagonize the host cell immune response. Moreover, specific mutations in the IFN inhibitory domain (IID) of EBOV and MARV VP35 that abrogate their interaction with virus-derived dsRNA, lack the ability to inhibit the host immune response. To investigate the role of MARV VP35 in the context of infectious virus, we used our reverse genetics system to generate two recombinant MARVs carrying specific mutations in the IID region of VP35. Our data show that wild-type and mutant viruses grow to similar titers in interferon deficient cells, but exhibit attenuated growth in interferon-competent cells. Furthermore, in contrast to wild-type virus, both MARV mutants were unable to inhibit expression of various antiviral genes. The MARV VP35 mutants exhibit similar phenotypes to those previously described for EBOV, suggesting the existence of a shared immune-modulatory strategy between filoviruses. Published by Elsevier Inc.
引用
收藏
页码:85 / 91
页数:7
相关论文
共 38 条
[1]   Genomic analysis of filoviruses associated with four viral hemorrhagic fever outbreaks in Uganda and the Democratic Republic of the Congo in 2012 [J].
Albarino, C. G. ;
Shoemaker, T. ;
Khristova, M. L. ;
Wamala, J. F. ;
Muyembe, J. J. ;
Balinandi, S. ;
Tumusiime, A. ;
Campbell, S. ;
Cannon, D. ;
Gibbons, A. ;
Bergeron, E. ;
Bird, B. ;
Dodd, K. ;
Spiropoulou, C. ;
Erickson, B. R. ;
Guerrero, L. ;
Knust, B. ;
Nichol, S. T. ;
Rollin, P. E. ;
Stroeher, U. .
VIROLOGY, 2013, 442 (02) :97-100
[2]   Development of a reverse genetics system to generate recombinant Marburg virus derived from a bat isolate [J].
Albarino, Cesar G. ;
Uebelhoer, Luke S. ;
Vincent, Joel P. ;
Khristova, Marina L. ;
Chakrabarti, Ayan K. ;
McElroy, Anita ;
Nichol, Stuart T. ;
Towner, Jonathan S. .
VIROLOGY, 2013, 446 (1-2) :230-237
[3]   Ebolavirus VP35 Coats the Backbone of Double-Stranded RNA for Interferon Antagonism [J].
Bale, Shridhar ;
Julien, Jean-Philippe ;
Bornholdt, Zachary A. ;
Krois, Alexander S. ;
Wilson, Ian A. ;
Saphire, Erica Ollmann .
JOURNAL OF VIROLOGY, 2013, 87 (18) :10385-10388
[4]   Immunoproteasomes down-regulate presentation of a subdominant T cell epitope from lymphocytic choriomeningitis virus [J].
Basler, M ;
Youhnovski, N ;
van den Broek, M ;
Przybylski, M ;
Groettrup, M .
JOURNAL OF IMMUNOLOGY, 2004, 173 (06) :3925-3934
[5]   Preference of RIG-I for short viral RNA molecules in infected cells revealed by next-generation sequencing [J].
Baum, Alina ;
Garcia-Sastre, Adolfo .
VIRULENCE, 2011, 2 (02) :166-169
[6]   Generation of bovine respiratory syncytial virus (BRSV) from cDNA: BRSV NS2 is not essential for virus replication in tissue culture, and the human RSV leader region acts as a functional BRSV genome promoter [J].
Buchholz, UJ ;
Finke, S ;
Conzelmann, KK .
JOURNAL OF VIROLOGY, 1999, 73 (01) :251-259
[7]   Ebola virus VP35 protein binds double-stranded RNA and inhibits alpha/beta interferon production induced by RIG-I signaling [J].
Cardenas, Washington B. ;
Loo, Yueh-Ming ;
Gale, Michael, Jr. ;
Hartman, Amy L. ;
Kimberlin, Christopher R. ;
Martinez-Sobrido, Luis ;
Saphire, Erica Ollmann ;
Basler, Christopher F. .
JOURNAL OF VIROLOGY, 2006, 80 (11) :5168-5178
[8]   The Marburg Virus VP24 Protein Interacts with Keap1 to Activate the Cytoprotective Antioxidant Response Pathway [J].
Edwards, Megan R. ;
Johnson, Britney ;
Mire, Chad E. ;
Xu, Wei ;
Shabman, Reed S. ;
Speller, Lauren N. ;
Leung, Daisy W. ;
Geisbert, Thomas W. ;
Amarasinghe, Gaya K. ;
Basler, Christopher F. .
CELL REPORTS, 2014, 6 (06) :1017-1025
[9]   Ebolavirus Proteins Suppress the Effects of Small Interfering RNA by Direct Interaction with the Mammalian RNA Interference Pathway [J].
Fabozzi, Giulia ;
Nabel, Christopher S. ;
Dolan, Michael A. ;
Sullivan, Nancy J. .
JOURNAL OF VIROLOGY, 2011, 85 (06) :2512-2523
[10]  
Feldmann H., 2013, Fields Virology