The unique dual targeting of AGO1 by two types of PRMT enzymes promotes phasiRNA loading in Arabidopsis thaliana

Author:

Barre-Villeneuve Clément12,Laudié Michèle12,Carpentier Marie-Christine12ORCID,Kuhn Lauriane34ORCID,Lagrange Thierry12,Azevedo-Favory Jacinthe12ORCID

Affiliation:

1. CNRS, Laboratoire Génome et Développement des Plantes, UMR 5096 , 66860  Perpignan , France

2. Université Perpignan Via Domitia, Laboratoire Génome et Développement des Plantes, UMR 5096 , F-66860  Perpignan , France

3. Plateforme protéomique Strasbourg – Esplanade, CNRS FR1589, Université de Strasbourg, IBMC , 2 allée Konrad Roentgen , F-67084  Strasbourg , France

4. Fédération de Recherche CNRS FR1589 , France

Abstract

Abstract Arginine/R methylation (R-met) of proteins is a widespread post-translational modification (PTM), deposited by a family of protein arginine/R methyl transferase enzymes (PRMT). Regulations by R-met are involved in key biological processes deeply studied in metazoan. Among those, post-transcriptional gene silencing (PTGS) can be regulated by R-met in animals and in plants. It mainly contributes to safeguard processes as protection of genome integrity in germlines through the regulation of piRNA pathway in metazoan, or response to bacterial infection through the control of AGO2 in plants. So far, only PRMT5 has been identified as the AGO/PIWI R-met writer in higher eukaryotes. We uncovered that AGO1, the main PTGS effector regulating plant development, contains unique R-met features among the AGO/PIWI superfamily, and outstanding in eukaryotes. Indeed, AGO1 contains both symmetric (sDMA) and asymmetric (aDMA) R-dimethylations and is dually targeted by PRMT5 and by another type I PRMT in Arabidopsis thaliana. We showed also that loss of sDMA didn’t compromise AtAGO1 subcellular trafficking in planta. Interestingly, we underscored that AtPRMT5 specifically promotes the loading of phasiRNA in AtAGO1. All our observations bring to consider this dual regulation of AtAGO1 in plant development and response to environment, and pinpoint the complexity of AGO1 post-translational regulation.

Funder

CNRS

Laboratoires d’Excellences

Université de Perpignan

Ecole Universitaire de Recherche

GAFL laboratory

University of Strasbourg

Publisher

Oxford University Press (OUP)

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