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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Induction of glutathione S-transferase activity and protein expression in brown bullhead (Ameiurus nebulosus) liver by ethoxyquin.
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Induction of glutathione S-transferase activity and protein expression in brown bullhead (Ameiurus nebulosus) liver by ethoxyquin.

机译:乙氧基喹诱导棕色牛头(Ameiurus nebulosus)肝脏中的谷胱甘肽S-转移酶活性和蛋白质表达。

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摘要

The inducibility of hepatic cytosolic glutathione S-transferases (GSTs) was examined in brown bullheads, a freshwater fish that is highly susceptible to hepatic neoplasia following exposure to carcinogen-contaminated sediments. Juvenile bullheads were fed a semi-purified antioxidant-free diet supplemented with ethoxyquin (0.5% w/w dissolved in 3% corn oil), a prototypical rodent GST-inducing agent, twice daily for 14 days. Control bullheads received the antioxidant-free diet supplemented with corn oil (3% w/w). A significant increase (1.6-fold, p < or = 0.01) in hepatic cytosolic GST activity toward 1-chloro-2,4-dinitrobenzene (CDNB) was observed in the ethoxyquin-treated bullheads relative to control fish. A trend toward increased GST-NBC activity was observed in the ethoxyquin-treated fish (1.2-fold, p = 0.06), whereas no treatment-related effects were observed on GST activities toward ethacrynic acid (ECA). In contrast, GST activity toward (+/-)-anti-benzo[a]pyrene-trans-7,8-dihydrodiol-9,10-epoxide (BPDE) was repressed in affinity-purified cytosolic fractions prepared from ethoxyquin-treated bullheads relative to control bullheads. Silver staining and densitometric analysis of isoelectric-focused, affinity-purified GST proteins revealed increased expression of two basic GST-like isoforms in ethoxyquin-treated fish. In summary, exposure to ethoxyquin increases brown bullhead GST-CDNB catalytic activity and hepatic cationic GST protein expression. However, the increase in overall GST-CDNB activity by ethoxyquin is associated with repression of GST-BPDE activity, suggesting differential effects on hepatic bullhead GST isoforms by ethoxyquin. The potential repression of bullhead GST isoforms that conjugate the carcinogenic metabolites of PAH metabolism under conditions of environmental chemical exposure could be a contributing factor in the sensitivity of bullheads to pollutant-associated neoplasia.
机译:在棕色bull头上检查了肝胞内谷胱甘肽S-转移酶(GSTs)的诱导能力,这是一种淡水鱼,在暴露于致癌物污染的沉积物后极易患肝肿瘤。给幼年的黑头吃半纯净,不含抗氧化剂的日粮,辅以乙氧基喹(0.5%w / w溶于3%玉米油),一种典型的啮齿类GST诱导剂,每天两次,共14天。对照牛头接受不含抗氧化剂的饮食,辅以玉米油(3%w / w)。相对于对照鱼,在乙氧基喹处理的牛头上观察到对1-氯-2,4-二硝基苯(CDNB)的肝胞液GST活性显着增加(1.6倍,p <或= 0.01)。在乙氧基喹处理的鱼中发现了GST-NBC活性增加的趋势(1.2倍,p = 0.06),而对GST活性对乙炔酸(ECA)的活性未见与治疗相关的影响。相反,在由乙氧基喹处理的牛头制备的亲和纯化的胞质级分中,对(+/-)-抗-苯并[a] py-反式-7,8-二氢二醇-9,10-环氧化物(BPDE)的GST活性受到抑制。相对于控制笨蛋。银染色和等电聚焦,亲和纯化的GST蛋白的光密度分析表明,乙氧基喹处理的鱼中两种基本的GST样亚型的表达增加。总之,暴露于乙氧基喹可以增加棕色牛头GST-CDNB的催化活性和肝阳离子GST蛋白的表达。但是,乙氧基喹啉对整体GST-CDNB活性的增加与GST-BPDE活性的抑制有关,表明乙氧基喹啉对肝牛头GST亚型有不同的作用。在环境化学暴露条件下,结合PAH代谢的致癌代谢产物的牛头GST亚型的潜在抑制可能是牛头对污染物相关瘤形成敏感性的一个促成因素。

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