Betanodavirus Induces Oxidative Stress-Mediated Cell Death That Prevented by Anti-Oxidants and Zfcatalase in Fish Cells

被引:25
作者
Chang, Chih-Wei [1 ]
Su, Yu-Chin [1 ]
Her, Guor-Mour [2 ]
Ken, Chuian-Fu [3 ]
Hong, Jiann-Ruey [1 ]
机构
[1] Natl Cheng Kung Univ, Inst Biotechnol, Lab Mol Virol & Biotechnol, Tainan 70101, Taiwan
[2] Natl Taiwan Ocean Univ, Inst Biosci & Biotechnol, Keelung, Taiwan
[3] Natl Changhua Univ Educ, Dept Biotechnol, Changhua, Taiwan
关键词
MANGANESE SUPEROXIDE-DISMUTASE; MITOCHONDRIAL FISSION; HYDROGEN-PEROXIDE; MAMMALIAN-CELLS; MARINE FISH; VIRUS; NECROSIS; FUSION; REPLICATION; ZFBCL-X(L);
D O I
10.1371/journal.pone.0025853
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The role of oxidative stress in the pathogenesis of RNA nervous necrosis virus infection is still unknown. Red-spotted grouper nervous necrosis virus (RGNNV) induced free radical species (ROS) production at 12-24 h post-infection (pi; early replication stage) in fish GF-1 cells, and then at middle replication stage (24-48 h pi), this ROS signal may upregulate some expressions of the anti-oxidant enzymes Cu/Zn SOD and catalase, and eventually expression of the transcription factor Nrf2. Furthermore, both antioxidants diphenyliodonium and N-acetylcysteine or overexpression of zebrafish catalase in GF-1 cells also reduced ROS production and protected cells for enhancing host survival rate due to RGNNV infection. Furthermore, localization of ROS production using esterase activity and Mitotracker staining assays found that the ROS generated can affect mitochondrial morphology changes and causes Delta Psi loss, both of which can be reversed by antioxidant treatment. Taken together, our data suggest that RGNNV induced oxidative stress response for playing dual role that can initiate the host oxidative stress defense system to upregulate expression of antioxidant enzymes and induces cell death via disrupting the mitochondrial morphology and inducing DY loss, which can be reversed by anti-oxidants and zfcatalase, which provide new insight into betanodavirus-induced ROS-mediated pathogenesis.
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页数:10
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