The Arabidopsis DNA glycosylase MBD4L repairs the nuclear genome in vivo

Author:

Torres José Roberto1ORCID,Lescano López Ignacio1ORCID,Ayala Ana María1ORCID,Alvarez María Elena1ORCID

Affiliation:

1. Centro de Investigaciones en Química Biológica de Córdoba, CIQUIBIC, CONICET Departamento de Química Biológica Ranwel Caputto, Facultad de Ciencias Químicas Universidad Nacional de Córdoba Haya de la Torre y Medina Allende, Ciudad Universitaria Córdoba X5000HUA Argentina

Abstract

SUMMARYDNA glycosylases remove mispaired or modified bases from DNA initiating the base excision repair (BER) pathway. The DNA glycosylase MBD4 (methyl‐CpG‐binding domain protein 4) has been functionally characterized in mammals, but not yet in plants, where it is called MBD4‐like (MBD4L). Mammalian MBD4 and Arabidopsis recombinant MBD4L excise U and T mispaired with G, as well as 5‐fluorouracil (5‐FU) and 5‐bromouracil (5‐BrU) in vitro. Here, we investigate the ability of Arabidopsis MBD4L to remove some of these substrates from the nuclear genome in vivo in coordination with uracil DNA glycosylase (AtUNG). We found that mbd4l mutants are hypersensitive to 5‐FU and 5‐BrU, as they displayed smaller size, less root growth, and higher cell death than control plants in both media. Using comet assays, we determined BER‐associated DNA fragmentation in isolated nuclei and observed reduced DNA breaks in mbd4l plants under both conditions, but particularly with 5‐BrU. The use of ung and ung x mbd4l mutants in these assays indicated that both MBD4L and AtUNG trigger nuclear DNA fragmentation in response to 5‐FU. Consistently, we here report the nuclear localization of AtUNG based on the expression of AtUNG‐GFP/RFP constructs in transgenic plants. Interestingly, MBD4L and AtUNG are transcriptionally coordinated but display not completely overlapping functions. MBD4L‐deficient plants showed reduced expression of BER genes and enhanced expression of DNA damage response (DDR) gene markers. Overall, our findings indicate that Arabidopsis MBD4L is critical for maintaining nuclear genome integrity and preventing cell death under genotoxic stress conditions.

Funder

Agencia Nacional de Promoción Científica y Tecnológica

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

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