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硫醇在培养的小鼠肝细胞中线粒体对铁和叔丁基过氧化氢介导的毒性的易感性中的作用。

The role of thiols in mitochondrial susceptibility to iron and tert-butyl hydroperoxide-mediated toxicity in cultured mouse hepatocytes.

作者信息

Shertzer H G, Bannenberg G L, Zhu H, Liu R M, Moldéus P

机构信息

Department of Environmental Health, University of Cincinnati Medical Center, Ohio 45267-0056.

出版信息

Chem Res Toxicol. 1994 May-Jun;7(3):358-66. doi: 10.1021/tx00039a013.

Abstract

Cultured hepatocytes derived from the newborn mutant c14CoS/c14CoS mouse (14CoS/14CoS cells) have 3-fold higher levels of reduced glutathione (GSH) and greater resistance to menadione toxicity than hepatocytes derived from the wild-type cch/cch mouse (ch/ch cells). Therefore, we used these cell lines to examine mechanisms of oxidative stress produced by iron and tert-butyl hydroperoxide (TBHP). Both cell types were resistant to 25 microM Fe2+ toxicity in the absence of added TBHP. However, in the presence of Fe2+, striking differences in susceptibility to TBHP toxicity between the cell types were observed. With 25 microM Fe2+, ch/ch cells showed TBHP concentration-dependent toxicity, with total lethality at 500 microM; in contrast, 14CoS/14CoS cells were completely resistant to the lethal effects of this concentration of TBHP. Concentration-dependent TBHP-mediated increases in cytosolic Ca2+, pH, and GSSG/GSH ratios, and decreases in GSH levels, were evident in ch/ch cells. 14CoS/14CoS cells exhibited concentration-dependent TBHP-mediated changes in GSH and GSSG/GSH ratios, but cytosolic Ca2+ and pH remained at control levels. Mitochondrial GSH pools were also diminished by TBHP, although there was no selective depletion; mitochondrial GSH remained at about 14% of total cellular GSH. Both cell types exhibited the same time-dependent decrease in plasma membrane protein thiols and a time-dependent increase in plasma membrane protein carbonyls. However, only ch/ch cells displayed a time-dependent depletion of mitochondrial protein thiols, concomitant with an increase in mitochondrial protein carbonyls, while 14CoS/14CoS cells were resistant to such changes. All of the effects produced by TBHP were prevented by desferoxamine.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

源自新生突变型c14CoS/c14CoS小鼠的培养肝细胞(14CoS/14CoS细胞),其还原型谷胱甘肽(GSH)水平比源自野生型cch/cch小鼠的肝细胞(ch/ch细胞)高3倍,且对甲萘醌毒性的抵抗力更强。因此,我们使用这些细胞系来研究铁和叔丁基过氧化氢(TBHP)产生氧化应激的机制。在不添加TBHP的情况下,两种细胞类型均对25微摩尔/升Fe2+毒性具有抗性。然而,在存在Fe2+的情况下,观察到两种细胞类型对TBHP毒性的敏感性存在显著差异。对于25微摩尔/升Fe2+,ch/ch细胞表现出TBHP浓度依赖性毒性,在500微摩尔/升时完全致死;相比之下,14CoS/14CoS细胞对该浓度的TBHP致死效应完全抗性。在ch/ch细胞中,TBHP介导的胞质Ca2+、pH值以及GSSG/GSH比值的浓度依赖性增加,以及GSH水平的降低很明显。14CoS/14CoS细胞表现出TBHP介导的GSH和GSSG/GSH比值的浓度依赖性变化,但胞质Ca2+和pH值保持在对照水平。TBHP也会使线粒体GSH池减少,尽管没有选择性消耗;线粒体GSH仍约占细胞总GSH的14%。两种细胞类型的质膜蛋白巯基均呈现相同的时间依赖性减少,质膜蛋白羰基呈现时间依赖性增加。然而,只有ch/ch细胞表现出线粒体蛋白巯基的时间依赖性消耗,同时线粒体蛋白羰基增加,而14CoS/14CoS细胞对此类变化具有抗性。TBHP产生的所有效应都可被去铁胺阻止。(摘要截断于250字)

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