Literature DB >> 21444763

Characterization of chicken Mda5 activity: regulation of IFN-β in the absence of RIG-I functionality.

Adam J Karpala1, Cameron Stewart, Jim McKay, John W Lowenthal, Andrew G D Bean.   

Abstract

In mammals, Mda5 and RIG-I are members of the evolutionary conserved RIG-like helicase family that play critical roles in the outcome of RNA virus infections. Resolving influenza infection in mammals has been shown to require RIG-I; however, the apparent absence of a RIG-I homolog in chickens raises intriguing questions regarding how this species deals with influenza virus infection. Although chickens are able to resolve certain strains of influenza, they are highly susceptible to others, such as highly pathogenic avian influenza H5N1. Understanding RIG-like helicases in the chicken is of critical importance, especially for developing new therapeutics that may use these systems. With this in mind, we investigated the RIG-like helicase Mda5 in the chicken. We have identified a chicken Mda5 homolog (ChMda5) and assessed its functional activities that relate to antiviral responses. Like mammalian Mda5, ChMda5 expression is upregulated in response to dsRNA stimulation and following IFN activation of cells. Furthermore, RNA interference-mediated knockdown of ChMda5 showed that ChMda5 plays an important role in the IFN response of chicken cells to dsRNA. Intriguingly, although ChMda5 levels are highly upregulated during influenza infection, knockdown of ChMda5 expression does not appear to impact influenza proliferation. Collectively, although Mda5 is functionally active in the chicken, the absence of an apparent RIG-I-like function may contribute to the chicken's susceptibility to highly pathogenic influenza.

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Year:  2011        PMID: 21444763     DOI: 10.4049/jimmunol.1003712

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  54 in total

1.  Duck Interferon-Inducible Transmembrane Protein 3 Mediates Restriction of Influenza Viruses.

Authors:  Graham A D Blyth; Wing Fuk Chan; Robert G Webster; Katharine E Magor
Journal:  J Virol       Date:  2015-10-14       Impact factor: 5.103

2.  Pig lacks functional NLRC4 and NAIP genes.

Authors:  Chisato Sakuma; Daisuke Toki; Hiroki Shinkai; Takato Takenouchi; Mitsuru Sato; Hiroshi Kitani; Hirohide Uenishi
Journal:  Immunogenetics       Date:  2016-10-29       Impact factor: 2.846

3.  Identification of avian RIG-I responsive genes during influenza infection.

Authors:  Megan R W Barber; Jerry R Aldridge; Ximena Fleming-Canepa; Yong-Dong Wang; Robert G Webster; Katharine E Magor
Journal:  Mol Immunol       Date:  2012-12-04       Impact factor: 4.407

4.  Genetic screen of a library of chimeric poxviruses identifies an ankyrin repeat protein involved in resistance to the avian type I interferon response.

Authors:  Karen Buttigieg; Stephen M Laidlaw; Craig Ross; Marc Davies; Stephen Goodbourn; Michael A Skinner
Journal:  J Virol       Date:  2013-02-20       Impact factor: 5.103

5.  Duck TRIM27-L enhances MAVS signaling and is absent in chickens and turkeys.

Authors:  Alysson H Blaine; Domingo Miranzo-Navarro; Lee K Campbell; Jerry R Aldridge; Robert G Webster; Katharine E Magor
Journal:  Mol Immunol       Date:  2015-08-05       Impact factor: 4.407

6.  Inhibition of antiviral innate immunity by birnavirus VP3 protein via blockage of viral double-stranded RNA binding to the host cytoplasmic RNA detector MDA5.

Authors:  Chengjin Ye; Lu Jia; Yanting Sun; Boli Hu; Lun Wang; Xingmeng Lu; Jiyong Zhou
Journal:  J Virol       Date:  2014-07-16       Impact factor: 5.103

7.  Interactions between the influenza A virus RNA polymerase components and retinoic acid-inducible gene I.

Authors:  Weizhong Li; Hongjun Chen; Troy Sutton; Adebimpe Obadan; Daniel R Perez
Journal:  J Virol       Date:  2014-06-18       Impact factor: 5.103

8.  Chicken cells sense influenza A virus infection through MDA5 and CARDIF signaling involving LGP2.

Authors:  Matthias Liniger; Artur Summerfield; Gert Zimmer; Kenneth C McCullough; Nicolas Ruggli
Journal:  J Virol       Date:  2011-11-09       Impact factor: 5.103

9.  Inhibition of Antiviral Innate Immunity by Avibirnavirus VP3 via Blocking TBK1-TRAF3 Complex Formation and IRF3 Activation.

Authors:  Tingjuan Deng; Boli Hu; Xingbo Wang; Lulu Lin; Jianwei Zhou; Yuting Xu; Yan Yan; Xiaojuan Zheng; Jiyong Zhou
Journal:  mSystems       Date:  2021-05-11       Impact factor: 6.496

Review 10.  Insight into alternative approaches for control of avian influenza in poultry, with emphasis on highly pathogenic H5N1.

Authors:  E M Abdelwhab; Hafez M Hafez
Journal:  Viruses       Date:  2012-11-19       Impact factor: 5.048

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