Prasad, Melvin ; Kataria, Priyanka ; Ningaraju, Sunayana ; Buddidathi, Radhika ; Bankapalli, Kondalarao ; Swetha, Chenna ; Susarla, Gautam ; Venkatesan, Radhika ; D'Silva, Patrick ; Shivaprasad, Padubidri V. (2022) Double DJ‐1 domain containing Arabidopsis DJ‐1D is a robust macromolecule deglycase New Phytologist, 236 (3). pp. 1061-1074. ISSN 0028-646X
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Official URL: http://doi.org/10.1111/nph.18414
Related URL: http://dx.doi.org/10.1111/nph.18414
Abstract
Plants, being sessile, are prone to genotoxin-induced macromolecule damage. Among the inevitable damaging agents are reactive carbonyls that induce glycation of DNA, RNA and proteins to result in the build-up of advanced glycated end-products. However, it is unclear how plants repair glycated macromolecules. DJ-1/PARK7 members are a highly conserved family of moonlighting proteins having double domains in higher plants and single domains in other phyla. Here we show that Arabidopsis DJ-1D offers robust tolerance to endogenous and exogenous stresses through its ability to repair glycated DNA, RNA and proteins. DJ-1D also reduced the formation of reactive carbonyls through its efficient methylglyoxalase activity. Strikingly, full-length double domain-containing DJ-1D suppressed the formation of advanced glycated end-products in yeast and plants. DJ-1D also efficiently repaired glycated nucleic acids and nucleotides in vitro and mitochondrial DNA in vivo under stress, indicating the existence of a new DNA repair pathway in plants. We propose that multi-stress responding plant DJ-1 members, often present in multiple copies among plants, probably contributed to the adaptation to a variety of endogenous and exogenous stresses.
Item Type: | Article |
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Source: | Copyright of this article belongs to New Phytologist Trust. |
ID Code: | 136784 |
Deposited On: | 10 Sep 2025 06:25 |
Last Modified: | 10 Sep 2025 06:25 |
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