Literature DB >> 29893480

Carbonyl reductases from Daphnia are regulated by redox cycling compounds.

Bettina Ebert1, Dieter Ebert2, Katrin Koebsch1, Edmund Maser1, Michael Kisiela1,3.   

Abstract

Oxidative stress is a major source of reactive carbonyl compounds that can damage cellular macromolecules, leading to so-called carbonyl stress. Aside from endogenously formed carbonyls, including highly reactive short-chain aldehydes and diketones, air pollutants derived from diesel exhaust like 9,10-phenanthrenequinone (PQ) can amplify oxidative stress by redox cycling, causing tissue damage. Carbonyl reductases (CRs), which are inducible in response to ROS, represent a fundamental enzymatic defense mechanism against oxidative stress. While commonly two carbonyl reductases (CBR1 and CBR3) are found in mammalian genomes, invertebrate model organisms like Drosophila melanogaster express no CR but a functional homolog to human CBR1, termed sniffer. The microcrustacean Daphnia is an ideal model organism to investigate the function of CRs because of its unique equipment with even four copies of the CR gene (CR1, CR2, CR3, CR4) in addition to one sniffer gene. Cloning and catalytic characterization of two carbonyl reductases CR1 and CR3 from D. magna and D. pulex arenata revealed that both proteins reductively metabolize aromatic dicarbonyls (e.g., menadione, PQ) and aliphatic α-diketones (e.g., 2,3-hexanedione), while sugar-derived aldehydes (methylglyoxal, glyoxal) and lipid peroxidation products such as acrolein and butanal were poor substrates, indicating no physiological function in the metabolism of short-chain aldehydes. Treatment of D. magna with redox cyclers like menadione and the pesticide paraquat led to an upregulation of CR1 and CR3 mRNA, suggesting a role in oxidative stress defense. Further studies are needed to investigate their potential to serve as novel biomarkers for oxidative stress in Daphnia.
© 2018 Federation of European Biochemical Societies.

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Keywords:  zzm321990Daphnia magnazzm321990; zzm321990Daphnia pulexzzm321990; Short-chain dehydrogenase/reductase (SDR); catalytic activity; gene expression; menadione; oxidative stress; paraquat; redox cycling agents

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Year:  2018        PMID: 29893480     DOI: 10.1111/febs.14578

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  1 in total

1.  The explosive trinitrotoluene (TNT) induces gene expression of carbonyl reductase in the blue mussel (Mytilus spp.): a new promising biomarker for sea dumped war relicts?

Authors:  Jennifer S Strehse; Matthias Brenner; Michael Kisiela; Edmund Maser
Journal:  Arch Toxicol       Date:  2020-10-22       Impact factor: 5.153

  1 in total

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