Chicken Cells Sense Influenza A Virus Infection through MDA5 and CARDIF Signaling Involving LGP2

被引:162
作者
Liniger, Matthias [1 ]
Summerfield, Artur [1 ]
Zimmer, Gert [1 ]
McCullough, Kenneth C. [1 ]
Ruggli, Nicolas [1 ]
机构
[1] IVI, Mittelhausern, Switzerland
基金
英国生物技术与生命科学研究理事会;
关键词
DOUBLE-STRANDED-RNA; INDUCIBLE GENE-I; INTERFERON REGULATORY FACTOR-3; HEPATITIS-C VIRUS; IFN-BETA PROMOTER; RIG-I; INNATE IMMUNITY; ANTIVIRAL RESPONSES; 5'-TRIPHOSPHATE RNA; ADAPTER PROTEIN;
D O I
10.1128/JVI.00742-11
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Avian influenza viruses (AIV) raise worldwide veterinary and public health concerns due to their potential for zoonotic transmission. While infection with highly pathogenic AIV results in high mortality in chickens, this is not necessarily the case in wild birds and ducks. It is known that innate immune factors can contribute to the outcome of infection. In this context, retinoic acid-inducible gene I (RIG-I) is the main cytosolic pattern recognition receptor known for detecting influenza A virus infection in mammalian cells. Chickens, unlike ducks, lack RIG-I, yet chicken cells do produce type I interferon (IFN) in response to AIV infection. Consequently, we sought to identify the cytosolic recognition elements in chicken cells. Chicken mRNA encoding the putative chicken analogs of CARDIF and LGP2 (chCARDIF and chLGP2, respectively) were identified. HT7-tagged chCARDIF was observed to associate with mitochondria in chicken DF-1 fibroblasts. The exogenous expression of chCARDIF, as well as of the caspase activation and recruitment domains (CARDs) of the chicken melanoma differentiation-associated protein 5 (chMDA5), strongly activated the chicken IFN-beta (chIFN-beta) promoter. The silencing of chMDA5, chCARDIF, and chIRF3 reduced chIFN-beta levels induced by AIV, indicating their involvement in AIV sensing. As with mammalian cells, chLGP2 had opposing effects. While overexpression decreased the activation of the chIFN-beta promoter, the silencing of endogenous chLGP2 reduced chIFN-beta induced by AIV. We finally demonstrate that the chMDA5 signaling pathway is inhibited by the viral nonstructural protein 1. In conclusion, chicken cells, including DF-1 fibroblasts and HD-11 macrophage-like cells, employ chMDA5 for sensing AIV.
引用
收藏
页码:705 / 717
页数:13
相关论文
共 62 条
[1]   The V proteins of paramyxoviruses bind the IFN-inducible RNA helicase, mda-5, and inhibit its activation of the IFN-β promoter [J].
Andrejeva, J ;
Childs, KS ;
Young, DF ;
Carlos, TS ;
Stock, N ;
Goodbourn, S ;
Randall, RE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (49) :17264-17269
[2]   Association of RIG-I with innate immunity of ducks to influenza [J].
Barber, Megan R. W. ;
Aldridge, Jerry R., Jr. ;
Webster, Robert G. ;
Magor, Katharine E. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (13) :5913-5918
[3]   CHICKEN HEMATOPOIETIC-CELLS TRANSFORMED BY 7 STRAINS OF DEFECTIVE AVIAN LEUKEMIA VIRUSES DISPLAY 3 DISTINCT PHENOTYPES OF DIFFERENTIATION [J].
BEUG, H ;
VONKIRCHBACH, A ;
DODERLEIN, G ;
CONSCIENCE, JF ;
GRAF, T .
CELL, 1979, 18 (02) :375-390
[4]   Hepatitis c virus escape from the interferon regulatory factor 3 pathway by a passive and active evasion strategy [J].
Binder, Marco ;
Kochs, Georg ;
Bartenschlager, Ralf ;
Lohmann, Volker .
HEPATOLOGY, 2007, 46 (05) :1365-1374
[5]   Full-length cDNAs from chicken bursal lymphocytes to facilitate gene function analysis [J].
Randolph B Caldwell ;
Andrzej M Kierzek ;
Hiroshi Arakawa ;
Yuri Bezzubov ;
Jolanta Zaim ;
Petra Fiedler ;
Stefan Kutter ;
Artem Blagodatski ;
Diyana Kostovska ;
Marek Koter ;
Jiri Plachy ;
Piero Carninci ;
Yoshihide Hayashizaki ;
Jean-Marie Buerstedde .
Genome Biology, 6 (1)
[6]   Avian influenza in birds and mammals [J].
Cardona, Carol J. ;
Xing, Zheng ;
Sandrock, Christian E. ;
Davis, Cristina E. .
COMPARATIVE IMMUNOLOGY MICROBIOLOGY AND INFECTIOUS DISEASES, 2009, 32 (04) :255-273
[7]   mda-5, but not RIG-I, is a common target for paramyxovirus V proteins [J].
Childs, Kay ;
Stock, Nicola ;
Ross, Craig ;
Andrejeva, Jelena ;
Hilton, Louise ;
Skinner, Michael ;
Randall, Richard ;
Goodbourn, Stephen .
VIROLOGY, 2007, 359 (01) :190-200
[8]   The C-terminal regulatory domain is the RNA 5′-triphosphate sensor of RIG-I [J].
Cui, Sheng ;
Eisenaecher, Katharina ;
Kirchhofer, Axel ;
Brzozka, Krzysztof ;
Lammens, Alfred ;
Lammens, Katja ;
Fujita, Takashi ;
Conzelmann, Karl-Klaus ;
Krug, Anne ;
Hopfner, Karl-Peter .
MOLECULAR CELL, 2008, 29 (02) :169-179
[9]   A robust system for RNA interference in the chicken using a modified microRNA operon [J].
Das, Raman M. ;
Van Hateren, Nick J. ;
Howell, Gareth R. ;
Farrell, Elizabeth R. ;
Bangs, Fiona K. ;
Porteous, Victoria C. ;
Manning, Elizabeth M. ;
McGrew, Michael J. ;
Ohyama, Kyoji ;
Sacco, Melanie A. ;
Halley, Pam A. ;
Sang, Helen M. ;
Storey, Kate G. ;
Placzek, Marysia ;
Tickle, Cheryll ;
Nair, Venugopal K. ;
Wilson, Stuart A. .
DEVELOPMENTAL BIOLOGY, 2006, 294 (02) :554-563
[10]   Establishment and maintenance of the innate antiviral response to west nile virus involves both RIG-I and MDA5 signaling through IPS-1 [J].
Fredericksen, Brenda L. ;
Keller, Brian C. ;
Fornek, Jamie ;
Katze, Michael G. ;
Gale, Michael, Jr. .
JOURNAL OF VIROLOGY, 2008, 82 (02) :609-616