Comparative Proteomic Analysis Shows an Elevation of Mdh1 Associated with Hepatotoxicity Induced by Copper Nanoparticle in Rats

文献类型: 外文期刊

第一作者: Dong Shu-wei

作者: Dong Shu-wei;Gao Zhao-hui;Li Xia;Shen Xiao-yun;Gao Zhao-hui;Xue Hui-wen

作者机构:

关键词: copper nanoparticle;hepatotoxicity;proteomics;malate dehydrogenase;bioinformatics;rat

期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:2.848; 五年影响因子:2.979 )

ISSN: 2095-3119

年卷期: 2014 年 13 卷 5 期

页码:

收录情况: SCI

摘要: Copper nanoparticle is a new material widely used in biological medicine, animal husbandry and industrial areas, but its potential toxicity to human health and environment remains unclear. In order to study the hepatotoxic mechanisms of nanoparticles copper, two-dimensional gel electrophoresis (2-DE) and matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI/TOF MS) of proteomics technology were used to isolate and identify the differentially expressed proteins from liver, which associated with hepatotoxicity induced by copper nanoparticle in rats. In this study, we have screened 15 kinds of proteins related with hepatotoxicity, of which spot8212 was identified as Malate dehydrogenase (Mdhl). The mRNA expression trend of Mdhl was consistent with the result of 2-DE by RT-PCR validation. Bioinformatics analysis showed that Mdhl was stable and no signal peptides, subcellular location was in endoplasmic reticulum; it contained many functional sites such as malate dehydrogenase activity signal sites 155LTRLDHNRAKSQI167; a helixes and random coils were the two main elements. Homologous analysis demonstrated high homologous of Mdh1 in rats with mouse and human, and the phylogenetic tree of Mdh1 was constructed. The result indicated that copper nanoparticle could regulate up the Mdhl protein expression so as to compensate the energy deficit. Energy metabolic disturbance may be a pathway for copper nanoparticle particles to exert the hepatotoxic effects in rats.

分类号:

  • 相关文献

[1]Proteomic analysis of salt-stressed tomato (Solanum lycopersicum) seedlings: effect of genotype and exogenous application of glycinebetaine. Chen, Songbi,Gollop, Natan,Heuer, Bruria. 2009

[2]Global analysis of lysine acetylation in strawberry leaves. Fang, Xianping,Chen, Wenyue,Ruan, Songlin,Ma, Huasheng,Zhao, Yun,Zhang, Hengmu,Yan, Chengqi,Jin, Liang,Cao, Lingling,Zhu, Jun,Cheng, Zhongyi. 2015

[3]Effect of Soyasaponins-Rich Extract from Soybean on Acute Alcohol-Induced Hepatotoxicity in Mice. Yang, Xiushi,Ren, Guixing,Yang, Xiushi,Dong, Chuan.

[4]Activating nuclear xenobiotic receptors and triggering ER stress and hepatic cytochromes P450 systems in quails (Coturnix C-coturnix) during atrazine exposure. Du, Zheng-Hai,Qin, Lei,Lin, Jia,Xia, Jun,Zhang, Cong,Li, Xue-Nan,Li, Jin-Long,Qin, Lei,Sun, Yan-Chun,Zhang, Cong,Li, Xue-Nan,Li, Jin-Long.

[5]External Application of the Volatile Oil from Blumea balsamifera May Be Safe for Liver - A Study on Its Chemical Composition and Hepatotoxicity. Pang, Yu-Xin,Fan, Zuo-Wang,Wang, Dan,Wang, Kai,Chen, Xiao-Lu,Hu, Xuan,Yu, Fu-Lai,Chen, Zhen-Xia,Pang, Yu-Xin,Fan, Zuo-Wang,Wang, Dan,Wang, Kai,Chen, Xiao-Lu,Hu, Xuan,Yu, Fu-Lai,Chen, Zhen-Xia,Fan, Zuo-Wang,Yang, Quan,Pang, Yu-Xin,Fan, Zuo-Wang,Wang, Dan,Wang, Kai,Chen, Xiao-Lu,Hu, Xuan,Yu, Fu-Lai,Chen, Zhen-Xia.

[6]Improved phosphorus acquisition by tobacco through transgenic expression of mitochondrial malate dehydrogenase from Penicillium oxalicum. Lu, Jun,Gao, Xiaorong,Yi, Jun,An, Lijia,Dong, Zhimin. 2012

[7]Enhanced release of fluoride from rhizosphere soil of tea plants by organic acids and reduced secretion of organic acids by fluoride supply. Wang, Lixia,Xiao, Bin,Yu, Youben,Wang, Lixia,Tang, Juhong,Yang, Yajun. 2013

[8]Structural flexibility and protein adaptation to temperature: Molecular dynamics analysis of malate dehydrogenases of marine molluscs. Dong, Yun-wei,Liao, Ming-li. g,Meng, Xian-liang,Somero, George N.. 2018

[9]Characterization of the immunogenicity and pathogenicity of malate dehydrogenase in Brucella abortus. Han, Xiangan,Tong, Yongliang,Tian, Mingxing,Sun, Xiaoqing,Wang, Shaohui,Ding, Chan,Yu, Shengqing.

[10]Expression of mitochondrial malate dehydrogenase in improves phosphate solubilization. Lu, Jun,Gao, Xiaorong,An, Lijia,Dong, Zhimin. 2012

[11]Effects of sub-chronic aluminum chloride on spermatogenesis and testicular enzymatic activity in male rats. Zhu, Y. Z.,Fu, Yang,Wang, J.,Song, M.,Li, M.,Li, Y. F.,Zhu, Y. Z.,Miao, L. G.,Sun, H.. 2014

[12]Species differences for stereoselective metabolism of ethofumesate and its enantiomers in vitro. Zhu, W.,Dang, Z.,Liu, Y.,Lv, C.,Diao, J.,Zhou, Z.,Qiu, J.. 2009

[13]Sex- and gonad-affecting scent compounds and 3 male pheromones in the rat. Zhang, Jian-Xu,Zhang, Jin-Hua,Sun, Lixing,Feng, Zhi-Yong. 2008

[14]Inhibition of bone formation in rats by aluminum exposure via Wnt/beta-catenin pathway. Sun, Xudong,Wang, Haoran,Huang, Wanyue,Yu, Hongyan,Shen, Tongtong,Song, Miao,Han, Yanfei,Li, Yanfei,Zhu, Yanzhu.

[15]The effect of taurine on the toll-like receptors/nuclear factor kappa B (TLRs/NF-kappa B) signaling pathway in Streptococcus uberis-induced mastitis in rats. Miao, Jinfeng,Zheng, Liuhai,Ma, Zili,Zhu, Wei,Zou, Sixiang,Zhang, Jinqiu. 2011

[16]Effects of aluminum trichloride on the cartilage stimulatory growth factors in rats. Zhang, Fan,Yu, Hongyan,Yang, Xu,Song, Miao,Han, Yanfei,Li, Yanfei,Sun, Xudong,Zhu, Yanzhu.

[17]Retinoid protects rats against neutrophil-induced oxidative stress in acute experimental mastitis. Gu, Beibei,Zhu, Wei,Miao, Jinfeng,Deng, Yu'E,Zou, Sixiang,Zhu, Yumin. 2009

[18]Protective effect of CpG-DNA against mastitis induced by Escherichia coli infection in a rat model. Zhu, Yumin,Fan, Hongjie,Miao, Jinfeng,Zou, Sixiang,Zhu, Yumin. 2008

[19]Protective effect of retinoid against endotoxin-induced mastitis in rats. Gu, B. -B.,Miao, J. -F.,Deng, Y. -E.,Zou, S. -X.,Zhu, Y. -M.. 2009

[20]Effects of Fermentation Astragalus Polysaccharides on Experimental Hepatic Fibrosis. Qin, Zhe,Qin, Zhe,Li, Jianxi,Yang, Zhiqiang,Zhang, Kai,Zhang, Jinyan,Meng, Jiaren,Wang, Long,Wang, Lei. 2012

作者其他论文 更多>>