Literature DB >> 19372224

Evidence for base excision repair of oxidative DNA damage in chloroplasts of Arabidopsis thaliana.

Benjamin L Gutman1, Krishna K Niyogi.   

Abstract

Chloroplasts are the sites of photosynthesis in plants, and they contain their own multicopy, requisite genome. Chloroplasts are also major sites for production of reactive oxygen species, which can damage essential components of the chloroplast, including the chloroplast genome. Compared with mitochondria in animals, relatively little is known about the potential to repair oxidative DNA damage in chloroplasts. Here we provide evidence of DNA glycosylase-lyase/endonuclease activity involved in base excision repair of oxidized pyrimidines in chloroplast protein extracts of Arabidopsis thaliana. Three base excision repair components (two endonuclease III homologs and an apurinic/apyrimidinic endonuclease) that might account for this activity were identified by bioinformatics. Transient expression of protein-green fluorescent protein fusions showed that all three are targeted to the chloroplast and co-localized with chloroplast DNA in nucleoids. The glycosylase-lyase/endonuclease activity of one of the endonuclease III homologs, AtNTH2, which had not previously been characterized, was confirmed in vitro. T-DNA insertions in each of these genes were identified, and the physiological and biochemical phenotypes of the single, double, and triple mutants were analyzed. This mutant analysis revealed the presence of a third glycosylase activity and potentially another pathway for repair of oxidative DNA damage in chloroplasts.

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Year:  2009        PMID: 19372224      PMCID: PMC2719338          DOI: 10.1074/jbc.M109.008342

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  42 in total

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Review 3.  Roles of base excision repair subpathways in correcting oxidized abasic sites in DNA.

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4.  Superoxide dismutase in Arabidopsis: an eclectic enzyme family with disparate regulation and protein localization.

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Journal:  Plant Physiol       Date:  1998-10       Impact factor: 8.340

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Authors:  Y Saito; F Uraki; S Nakajima; A Asaeda; K Ono; K Kubo; K Yamamoto
Journal:  J Bacteriol       Date:  1997-06       Impact factor: 3.490

Review 6.  Repair of oxidized DNA bases in the yeast Saccharomyces cerevisiae.

Authors:  P M Girard; S Boiteux
Journal:  Biochimie       Date:  1997-10       Impact factor: 4.079

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Review 8.  Repair of oxidative damage to DNA: enzymology and biology.

Authors:  B Demple; L Harrison
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  19 in total

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Review 2.  Genotoxic stress and DNA repair in plants: emerging functions and tools for improving crop productivity.

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4.  RNase H1 Cooperates with DNA Gyrases to Restrict R-Loops and Maintain Genome Integrity in Arabidopsis Chloroplasts.

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Review 6.  Protecting DNA from errors and damage: an overview of DNA repair mechanisms in plants compared to mammals.

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Journal:  Cell Mol Life Sci       Date:  2016-12-20       Impact factor: 9.261

7.  Cytonuclear coevolution in a holoparasitic plant with highly disparate organellar genomes.

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8.  DNA repair and recombination in higher plants: insights from comparative genomics of Arabidopsis and rice.

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9.  Single-nucleotide and long-patch base excision repair of DNA damage in plants.

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Review 10.  DNA maintenance in plastids and mitochondria of plants.

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