Publication:
Dual control of ROS1-mediated active DNA demethylation by DNA damage-binding protein 2 (DDB2).

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Date

2017-10-17

Authors

Cordoba-Cañero, Dolores
Cognat, Valerie
Ariza, Rafael R
Roldan Arjona, Teresa
Molinier, Jean

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Wiley-Blackwell Publishing
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Abstract

By controlling gene expression, DNA methylation contributes to key regulatory processes during plant development. Genomic methylation patterns are dynamic and must be properly maintained and/or re-established upon DNA replication and active removal, and therefore require sophisticated control mechanisms. Here we identify direct interplay between the DNA repair factor DNA damage-binding protein 2 (DDB2) and the ROS1-mediated active DNA demethylation pathway in Arabidopsis thaliana. We show that DDB2 forms a complex with ROS1 and AGO4 and that they act at the ROS1 locus to modulate levels of DNA methylation and therefore ROS1 expression. We found that DDB2 represses enzymatic activity of ROS1. DNA demethylation intermediates generated by ROS1 are processed by the DNA 3'-phosphatase ZDP and the apurinic/apyrimidinic endonuclease APE1L, and we also show that DDB2 interacts with both enzymes and stimulates their activities. Taken together, our results indicate that DDB2 acts as a critical regulator of ROS1-mediated active DNA demethylation.

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MeSH Terms

Arabidopsis
Arabidopsis proteins
Argonaute proteins
DNA damage
DNA demethylation
DNA methylation
DNA-binding proteins
Endonucleases
Gene expression regulation, plant
Nuclear proteins
Nucleotidases

DeCS Terms

Arabidopsis
Daño del ADN
Desmetilación del ADN
Endonucleasas
Metilación de ADN
Proteínas argonautas
Proteínas nucleares
Proteínas de arabidopsis
Proteínas de unión al ADN

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Keywords

Arabidopsis thaliana, AGO4, DDB2, DNA methylation, ROS1, Active DNA demethylation

Citation

Córdoba-Cañero D, Cognat V, Ariza RR, Roldán Arjona T, Molinier J. Dual control of ROS1-mediated active DNA demethylation by DNA damage-binding protein 2 (DDB2). Plant J. 2017 Dec;92(6):1170-1181