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PMID: 17804509 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Activation of the beta interferon promoter by unnatural Sendai virus infection requires RIG-I and is inhibited by viral C proteins.

Journal of virology ·Vol. 81 ·No. 22 ·2007-11-00 ·Pages 12227-37

Strähle L, Marq JB, Brini A, Hausmann S, Kolakofsky D, Garcin D

Abstract

As infection with wild-type (wt) Sendai virus (SeV) normally activates beta interferon (IFN-beta) very poorly, two unnatural SeV infections were used to study virus-induced IFN-beta activation in mouse embryonic fibroblasts: (i) SeV-DI-H4, which is composed mostly of small, copyback defective interfering (DI) genomes and whose infection overproduces short 5'-triphosphorylated trailer RNAs (pppRNAs) and underproduces viral V and C proteins, and (ii) SeV-GFP(+/-), a coinfection that produces wt amounts of viral gene products but that also produces both green fluorescent protein (GFP) mRNA and its complement, which can form double-stranded RNA (dsRNA) with capped 5' ends. We found that (i) virus-induced signaling to IFN-beta depended predominantly on RIG-I (as opposed to mda-5) for both SeV infections, i.e., that RIG-I senses both pppRNAs and dsRNA without 5'-triphosphorylated ends, and (ii) it is the viral C protein (as opposed to V) that is primarily responsible for countering RIG-I-dependent signaling to IFN-beta. Nondefective SeV that cannot specifically express C proteins not only cannot prevent the effects of transfected poly(I-C) or (ppp)RNAs on IFN-beta activation but also synergistically enhances these effects. SeV-V(minus) infection, in contrast, behaves mostly like wt SeV and counteracts the effects of transfected poly(I-C) or (ppp)RNAs.

MeSH Terms
Animals Cells, Cultured DEAD Box Protein 58 DEAD-box RNA Helicases/genetics,metabolism Gene Expression Regulation Green Fluorescent Proteins/analysis,genetics Interferon-Induced Helicase, IFIH1 Interferon-beta/genetics Mice Promoter Regions, Genetic/genetics RNA/pharmacology RNA, Double-Stranded/pharmacology RNA, Viral/metabolism Sendai virus/genetics,metabolism Transcriptional Activation Viral Proteins/genetics,metabolism
Chemicals
RNA, Double-Stranded RNA, Viral V protein, Sendai virus Viral Proteins nonstructural C protein, Sendai virus Green Fluorescent Proteins RNA Interferon-beta Ddx58 protein, mouse Ifih1 protein, mouse DEAD Box Protein 58 DEAD-box RNA Helicases Interferon-Induced Helicase, IFIH1
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Strähle Laura
Department of Microbiology and Molecular Medicine, University of Geneva School of Medicine, 11 Ave de Champel, CH1211, Geneva, Switzerland.
Marq Jean-Baptiste
Brini Albert
Hausmann Stéphane
Kolakofsky Daniel
Garcin Dominique
References (30)
30 references, click to expand
  1. Differential roles of MDA5 and RIG-I helicases in the recognition of RNA viruses.
    Nature. 2006 May 4;441(7089):101-5 PMID: 16625202
  2. Cytosolic 5'-triphosphate ended viral leader transcript of measles virus as activator of the RIG I-mediated interferon response.
    PLoS One. 2007;2(3):e279 PMID: 17356690
  3. Sendai virus trailer RNA binds TIAR, a cellular protein involved in virus-induced apoptosis.
    EMBO J. 2002 Oct 1;21(19):5141-50 PMID: 12356730
  4. The V proteins of simian virus 5 and other paramyxoviruses inhibit induction of interferon-beta.
    Virology. 2002 Nov 10;303(1):33-46 PMID: 12482656
  5. Sendai virus targets inflammatory responses, as well as the interferon-induced antiviral state, in a multifaceted manner.
    J Virol. 2003 Jul;77(14):7903-13 PMID: 12829830
  6. C and V proteins of Sendai virus target signaling pathways leading to IRF-3 activation for the negative regulation of interferon-beta production.
    Virology. 2004 Jul 20;325(1):137-48 PMID: 15231393
  7. Plus and minus strand leader RNAs in negative strand virus-infected cells.
    Cell. 1979 Nov;18(3):735-47 PMID: 229962
  8. Effect of defective interfering particles on plus- and minus- strand leader RNAs in vesicular stomatitis virus-infected cells.
    J Virol. 1980 Sep;35(3):704-9 PMID: 6252332
  9. Interaction of VSV leader RNA and nucleocapsid protein may control VSV genome replication.
    Cell. 1981 Mar;23(3):837-45 PMID: 6261959
  10. Synthesis of small RNAs using T7 RNA polymerase.
    Methods Enzymol. 1989;180:51-62 PMID: 2482430
  11. The P gene of human parainfluenza virus type 1 encodes P and C proteins but not a cysteine-rich V protein.
    J Virol. 1991 Jun;65(6):3406-10 PMID: 1851888
  12. The beta-interferon promoter responds to priming through multiple independent regulatory elements.
    J Biol Chem. 1994 Dec 2;269(48):30609-15 PMID: 7982980
  13. Mutational analysis of the vaccinia virus E3 protein defines amino acid residues involved in E3 binding to double-stranded RNA.
    J Virol. 1996 Apr;70(4):2611-4 PMID: 8642694
  14. Efficient repression of endogenous major histocompatibility complex class II expression through dominant negative CIITA mutants isolated by a functional selection strategy.
    Mol Cell Biol. 1997 Aug;17(8):4249-58 PMID: 9234682
  15. The short Sendai virus leader region controls induction of programmed cell death.
    Virology. 1998 Apr 10;243(2):340-53 PMID: 9568033
  16. How cells respond to interferons.
    Annu Rev Biochem. 1998;67:227-64 PMID: 9759489
  17. The V proteins of paramyxoviruses bind the IFN-inducible RNA helicase, mda-5, and inhibit its activation of the IFN-beta promoter.
    Proc Natl Acad Sci U S A. 2004 Dec 7;101(49):17264-9 PMID: 15563593
  18. The RNA helicase Lgp2 inhibits TLR-independent sensing of viral replication by retinoic acid-inducible gene-I.
    J Immunol. 2005 Oct 15;175(8):5260-8 PMID: 16210631
  19. Cardif is an adaptor protein in the RIG-I antiviral pathway and is targeted by hepatitis C virus.
    Nature. 2005 Oct 20;437(7062):1167-72 PMID: 16177806
  20. MasterCARD: a priceless link to innate immunity.
    Trends Mol Med. 2006 Feb;12(2):53-6 PMID: 16406812
  21. Type 1 interferons and the virus-host relationship: a lesson in détente .
    Science. 2006 May 12;312(5775):879-82 PMID: 16690858
  22. Sendai virus defective-interfering genomes and the activation of interferon-beta.
    Virology. 2006 Jul 20;351(1):101-11 PMID: 16631220
  23. Manipulation of the nuclear factor-kappaB pathway and the innate immune response by viruses.
    Oncogene. 2006 Oct 30;25(51):6844-67 PMID: 17072332
  24. RIG-I-mediated antiviral responses to single-stranded RNA bearing 5'-phosphates.
    Science. 2006 Nov 10;314(5801):997-1001 PMID: 17038589
  25. 5'-Triphosphate RNA is the ligand for RIG-I.
    Science. 2006 Nov 10;314(5801):994-7 PMID: 17038590
  26. Overproduction of double-stranded RNA in vesicular stomatitis virus-infected cells activates a constitutive cell-type-specific antiviral response.
    J Virol. 2007 Jan;81(2):503-13 PMID: 17065213
  27. Inhibition of retinoic acid-inducible gene I-mediated induction of beta interferon by the NS1 protein of influenza A virus.
    J Virol. 2007 Jan;81(2):514-24 PMID: 17079289
  28. mda-5, but not RIG-I, is a common target for paramyxovirus V proteins.
    Virology. 2007 Mar 1;359(1):190-200 PMID: 17049367
  29. Targeting of the Sendai virus C protein to the plasma membrane via a peptide-only membrane anchor.
    J Virol. 2007 Apr;81(7):3187-97 PMID: 17229713
  30. HuR and mRNA stability.
    Cell Mol Life Sci. 2001 Feb;58(2):266-77 PMID: 11289308
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
2007-11-00
Epub
2007-00-05
Pages
12227-37
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC2169027
Subset
IM
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