Protein Carbonyl Formation in Response to Propiconazole-induced Oxidative Stress

被引:49
作者
Bruno, Maribel [1 ]
Moore, Tanya [1 ]
Nesnow, Stephen [1 ]
Ge, Yue [1 ]
机构
[1] US EPA, Div Environm Carcinogenesis, Natl Hlth & Environm Effects Res Lab, Res Triangle Pk, NC 27711 USA
关键词
carbonylation; propiconazole; oxidative stress; protein oxidation; TRIAZOLE CONAZOLE FUNGICIDES; PROTEOMIC ANALYSIS; OXIDIZED PROTEINS; EXPRESSION; MICE; INCREASES; LIVER; IDENTIFICATION; QUANTITATION; TRIADIMEFON;
D O I
10.1021/pr801061r
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Propiconazole, a widely used fungicide, is hepatotoxic and hepatotumorigenic in mice. Previous genomic analysis of liver tissues from propiconazole-treated mice identified genes and pathways involved in oxidative stress, suggesting that oxidative stress may play a role in propiconazole-induced toxicity. To understand the contribution of oxidative stress on toxicity at the protein level, we developed an integrated approach for the systematic measurement of protein oxidation in the livers from propiconazole-treated mice. Liver protein carbonylation increased significantly after treatment with propiconazole, demonstrating propiconazole-associated induction of oxidative stress. Utilizing two-dimensional gel electrophoresis (2-DE), immunoblotting, and mass spectrometry, we identified 17 carbonylated proteins that were altered with varying intensities by propiconazole treatment. The potential effects of protein carbonylation on protein functions and cellular activities in the liver of propiconazole-treated mice were further investigated. A significant negative correlation between protein carbonylation and cytochrome c reductase activity was found. We conclude that glycolysis, mitochondrial respiratory chain, ATP production, amino acid metabolism, CO2 hydration, cellular antioxidant defense and detoxification system, and tetra hydrobiopterin pathways are affected by oxygen radicals in the livers of propiconazole-treated mice. This study suggests a mode of propiconazole-induced toxicity in mouse liver which primarily involves oxidative damage to cellular proteins.
引用
收藏
页码:2070 / 2078
页数:9
相关论文
共 51 条
[11]   Structure and function of the bacterial bc1 complex:: Domain movement, subunit interactions, and emerging rationale engineering attempts [J].
Darrouzet, E ;
Valkova-Valchanova, M ;
Ohnishi, T ;
Daldal, F .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1999, 31 (03) :275-288
[12]   Quantitative Proteomics Analysis of Macrophage Rafts Reveals Compartmentalized Activation of the Proteasome and of Proteasome-mediated ERK Activation in Response to Lipopolysaccharide [J].
Dhungana, Suraj ;
Merrick, B. Alex ;
Tomer, Kenneth B. ;
Fessler, Michael B. .
MOLECULAR & CELLULAR PROTEOMICS, 2009, 8 (01) :201-213
[13]   Quantitation of oxidative damage to tissue proteins [J].
Fagan, JM ;
Sleczka, BG ;
Sohar, I .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 1999, 31 (07) :751-757
[14]   Multiplexed fluorescence detection of phosphorylation, glycosylation, and total protein in the proteomic analysis of breast cancer refractoriness [J].
Ge, Y ;
Rajkumar, L ;
Guzman, RC ;
Nandi, S ;
Patton, WF ;
Agnew, BJ .
PROTEOMICS, 2004, 4 (11) :3464-3467
[15]  
Grant Chris M, 2008, J Biol, V7, P1, DOI 10.1186/jbiol63
[16]   S-adenosylmethionine and its products [J].
Grillo, M. A. ;
Colombatto, S. .
AMINO ACIDS, 2008, 34 (02) :187-193
[17]  
HAN JY, 2002, POULTRY SCI, V84, P1432
[18]   Regulation of homocysteine metabolism [J].
House, JD ;
Jacobs, RL ;
Stead, LM ;
Brosnan, ME ;
Brosnan, JT .
ADVANCES IN ENZYME REGULATION, VOL 39, 1999, 39 :69-91
[19]  
*INCHEM, 1987, INCHEM MON 2, V768
[20]   The role of the electron transport gene SDHC on lifespan and cancer [J].
Ishii, Naoaki ;
Ishii, Takamasa ;
Hartman, Philip S. .
EXPERIMENTAL GERONTOLOGY, 2006, 41 (10) :952-956