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  1. Artikel: Antiviral Defense Involves AGO4 in an Arabidopsis–Potexvirus Interaction

    Brosseau, Chantal / Adurogbangba Ayooluwa / El Oirdi Mohamed / Ma Xiaofang / Moffett Peter

    Molecular plant-microbe interactions. 2016 Nov., v. 29, no. 11

    2016  

    Abstract: In plants, RNA silencing regulates gene expression through the action of Dicer-like (DCL) and Argonaute (AGO) proteins via micro RNAs and RNA-dependent DNA methylation (RdDM). In addition, RNA silencing functions as an antiviral defense mechanism by ... ...

    Abstract In plants, RNA silencing regulates gene expression through the action of Dicer-like (DCL) and Argonaute (AGO) proteins via micro RNAs and RNA-dependent DNA methylation (RdDM). In addition, RNA silencing functions as an antiviral defense mechanism by targeting virus-derived double-stranded RNA. Plants encode multiple AGO proteins with specialized functions, including AGO4-like proteins that affect RdDM and AGO2, AGO5, and AGO1, which have antiviral activities. Here, we show that AGO4 is also required for defense against the potexvirus Plantago asiatica mosaic virus (PlAMV), most likely independent of RdDM components such as DCL3, Pol IV, and Pol V. Transient assays showed that AGO4 has direct antiviral activity on PlAMV and, unlike RdDM, this activity does not require nuclear localization of AGO4. Furthermore, although PlAMV infection causes a decrease in AGO4 expression, PlAMV causes a change in AGO4 localization from a largely nuclear to a largely cytoplasmic distribution. These results indicate an important role for AGO4 in targeting plant RNA viruses as well as demonstrating novel mechanisms of regulation of and by AGO4, independent of its canonical role in regulating gene expression by RdDM.
    Schlagwörter antiviral properties ; DNA methylation ; double-stranded RNA ; gene expression ; microRNA ; Plantago asiatica mosaic virus ; proteins ; RNA interference
    Sprache Englisch
    Erscheinungsverlauf 2016-11
    Umfang p. 878-888.
    Erscheinungsort Molecular Plant-Microbe Interactions
    Dokumenttyp Artikel
    ZDB-ID 743331-1
    ISSN 1943-7706 ; 0894-0282
    ISSN (online) 1943-7706
    ISSN 0894-0282
    DOI 10.1094%2FMPMI-09-16-0188-R
    Datenquelle NAL Katalog (AGRICOLA)

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  2. Artikel: Antiviral Defense Involves AGO4 in an Arabidopsis-Potexvirus Interaction.

    Brosseau, Chantal / El Oirdi, Mohamed / Adurogbangba, Ayooluwa / Ma, Xiaofang / Moffett, Peter

    Molecular plant-microbe interactions : MPMI

    2016  Band 29, Heft 11, Seite(n) 878–888

    Abstract: In plants, RNA silencing regulates gene expression through the action of Dicer-like (DCL) and Argonaute (AGO) proteins via micro RNAs and RNA-dependent DNA methylation (RdDM). In addition, RNA silencing functions as an antiviral defense mechanism by ... ...

    Abstract In plants, RNA silencing regulates gene expression through the action of Dicer-like (DCL) and Argonaute (AGO) proteins via micro RNAs and RNA-dependent DNA methylation (RdDM). In addition, RNA silencing functions as an antiviral defense mechanism by targeting virus-derived double-stranded RNA. Plants encode multiple AGO proteins with specialized functions, including AGO4-like proteins that affect RdDM and AGO2, AGO5, and AGO1, which have antiviral activities. Here, we show that AGO4 is also required for defense against the potexvirus Plantago asiatica mosaic virus (PlAMV), most likely independent of RdDM components such as DCL3, Pol IV, and Pol V. Transient assays showed that AGO4 has direct antiviral activity on PlAMV and, unlike RdDM, this activity does not require nuclear localization of AGO4. Furthermore, although PlAMV infection causes a decrease in AGO4 expression, PlAMV causes a change in AGO4 localization from a largely nuclear to a largely cytoplasmic distribution. These results indicate an important role for AGO4 in targeting plant RNA viruses as well as demonstrating novel mechanisms of regulation of and by AGO4, independent of its canonical role in regulating gene expression by RdDM.
    Sprache Englisch
    Erscheinungsdatum 2016-11
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ZDB-ID 743331-1
    ISSN 1943-7706 ; 0894-0282
    ISSN (online) 1943-7706
    ISSN 0894-0282
    DOI 10.1094/MPMI-09-16-0188-R
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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