DNA repair in plant mitochondria - A complete base excision repair pathway in potato tuber mitochondria

Beatriz Ferrando, Ana Luiza Dorigan de Matos Furlanetto, Ricardo Gredilla, Jesper F Havelund, Kim H Hebelstrup, Ian Max Møller*, Tinna Stevnsner

*Corresponding author for this work

Research output: Contribution to journalJournal articleResearchpeer-review

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Abstract

Mitochondria are one of the major sites of reactive oxygen species (ROS) production in the plant cell. ROS can damage DNA, and this damage is in many organisms mainly repaired by the base excision repair (BER) pathway. We know very little about DNA repair in plants especially in the mitochondria. Combining proteomics, bioinformatics, Western blot and enzyme assays we here demonstrate that the complete BER pathway is found in mitochondria isolated from potato (Solanum tubersosum) tubers. The enzyme activities of three DNA glycosylases and an apurinic/apyrimidinic (AP) endonuclease were characterized with respect to Mg2+ dependence and, in the case of the AP endonuclease, temperature sensitivity. Evidence for the presence of the DNA polymerase and the DNA ligase, which complete the repair pathway by replacing the excised base and closing the gap, was also obtained. We tested the effect of oxidative stress on the mitochondrial BER pathway by incubating potato tubers under hypoxia. Protein carbonylation increased significantly in hypoxic tuber mitochondria indicative of increased oxidative stress. The activity of two BER enzymes increased significantly in response to this oxidative stress consistent with the role of the BER pathway in the repair of oxidative damage to mtDNA. This article is protected by copyright. All rights reserved.

Original languageEnglish
JournalPhysiologia Plantarum
Volume166
Issue number2
Pages (from-to)494-512
ISSN0031-9317
DOIs
Publication statusPublished - Jun 2019

Keywords

  • DNA Glycosylases/genetics
  • DNA Repair/genetics
  • DNA, Mitochondrial/genetics
  • DNA, Plant/genetics
  • DNA-(Apurinic or Apyrimidinic Site) Lyase/genetics
  • DNA-Directed DNA Polymerase/genetics
  • Mitochondria/genetics
  • Reactive Oxygen Species/metabolism
  • Solanum tuberosum/genetics

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