4.7 Article

Copper exposure induces toxicity to the antioxidant system via the destruction of Nrf2/ARE signaling and caspase-3-regulated DNA damage in fish muscle: Amelioration by myo-inositol

期刊

AQUATIC TOXICOLOGY
卷 159, 期 -, 页码 245-255

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aquatox.2014.12.020

关键词

Muscle; Nrf2; Copper; myo-Inositol; DNA fragmentation; Carp

资金

  1. National Natural Science Foundation of China [31001116, 31272674, 31302197]
  2. National Department Public Benefit Research Foundation (Agriculture) of China [2010003020]
  3. National 973 Project of China [2014CB138600]
  4. Specialized Research Fund for the Doctoral Program of Higher Education of China [20135103110001]
  5. Key Fund Project of Sichuan Provincial Department of Education [14ZA0007]
  6. Fostering Foundation of Sichuan Agricultural University for the Excellent Ph.D. Dissertation [YBPY1002]

向作者/读者索取更多资源

The muscle is the main portion of fish that is consumed by humans. Copper (Cu) can induce oxidative damage in fish muscle. However, the effects of Cu exposure on the muscle antioxidant system and molecular patterns and preventive measures against these effects remain unclear. In this study, ROS production, enzymatic and mRNA levels of antioxidant enzymes and NF-E2-related factor 2 (Nrf2) signaling-related molecules, antioxidant response element (ARE) binding ability, DNA fragmentation and caspase-3 activities were analyzed in fish muscle following Cu exposure or myo-inositol (MI) pre-administration. The results indicated that contamination due to copper exposure caused an approximately three-fold increase in ROS production, induced lipid peroxidation and protein oxidation, and resulted in depletion of the glutathione (GSH) content of fish muscle. Moreover, Cu exposure caused decreases in the activities of total superoxide dismutase (T-SOD), CuZnSOD, and glutathione peroxidase (GPx) that were accompanied by decreases in CuZnSOD, GPx1a, GPx1b and signaling factor protein kinase C delta mRNA levels. The decreases in the antioxidant enzyme gene mRNA levels were confirmed to be partly due to the reduced nuclear Nrf2 protein levels, poor ARE binding ability and increased caspase-3 signaling-modulated DNA fragmentation in the fish muscle. Interestingly, MI pre-treatment prevented fish muscle from Cu-induced oxidative damages mainly through increasing the GSH content, and increasing the CuZnSOD and GPx activities and corresponding mRNA levels and ARE binding ability. Taken together, our results show for the first time that Cu exposure caused oxidative damage to the muscle by decreasing the antioxidant enzyme activities via the down-regulation of the expression of genes related to the disruption of the Nrf2/ARE signaling, and this down-regulation was partially caused by caspase-3-regulated DNA fragmentation. Finally, MI protects fish against Cu toxicity. (C) 2014 Elsevier B.V. All rights reserved.

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