Effects of glutathione depletion on cadmium-induced metallothionein synthesis, cytotoxicity, and proto-oncogene expression in cultured rat myoblasts.

M Shimizu, J F Hochadel, M P Waalkes
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引用次数: 48

Abstract

Cadmium (Cd) is a highly toxic metal and a known carcinogen. Although the carcinogenic mechanism of action is unknown, Cd will induce transcriptional activation of c-myc and c-jun. We have previously found that the extent of Cd-induced oncogene expression is limited by the presence of cellular metallothionein (MT) in rat L6 myoblasts. Glutathione (GSH) is thought to play an important role in protection against Cd before the onset of MT synthesis. Thus, this study examined the effects of GSH depletion on Cd-induced MT synthesis, cytotoxicity, and proto-oncogene expression in rat L6 myoblasts after pretreatment with L-buthionine sulfoximine (BSO), a potent inhibitor of gamma-glutamyl-cysteine synthetase, which effectively depletes GSH. Exposure of L6 cells to BSO (5 or 25 microM) resulted in a dose-dependent decrease in cellular GSH levels. GSH depletion had no effect on Cd- or zinc-induced MT synthesis. Although the depletion of GSH was not itself cytotoxic in L6 cells, BSO pretreatment, particularly at the higher dose (25 microM), resulted in a dose-dependent increase in the sensitivity to Cd cytotoxicity, as assessed by a tetrazolium-based dye (MTT) assay. Low levels of Cd (1 microM) slightly increased the expression of both c-myc and c-jun as assessed by increases in gene-specific mRNA levels, in accordance with previous studies. GSH depletion (5 muM BSO) likewise caused an increase in expression of c-myc and c-jun. However, combined GSH depletion and Cd exposure decreased levels of c-myc and c-jun transcription well below control levels. These results suggest that increased cytotoxicity resulting from exposure to Cd after BSO depletion of cellular GSH abrogates the oncogene activation observed after either treatment alone. Thus proto-oncogene expression induced by Cd appears to be dependent on the absence of over Cd-induced cytotoxicity.

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谷胱甘肽耗竭对镉诱导的大鼠成肌细胞金属硫蛋白合成、细胞毒性和原癌基因表达的影响。
镉(Cd)是一种剧毒金属,也是一种已知的致癌物。虽然致癌机制尚不清楚,但Cd会诱导c-myc和c-jun的转录激活。我们之前发现cd诱导的癌基因表达程度受到大鼠L6成肌细胞中细胞金属硫蛋白(MT)存在的限制。谷胱甘肽(GSH)被认为在MT合成开始前对Cd起重要作用。因此,本研究检测了用l-丁硫氨酸亚砜(BSO)预处理大鼠L6成肌细胞后,GSH消耗对cd诱导的MT合成、细胞毒性和原癌基因表达的影响,BSO是一种有效的γ -谷氨酰半胱氨酸合成酶抑制剂,可有效消耗GSH。L6细胞暴露于BSO(5或25微米)导致细胞GSH水平的剂量依赖性下降。GSH耗竭对Cd或锌诱导的MT合成没有影响。虽然GSH的消耗本身对L6细胞没有细胞毒性,但通过四氮唑基染料(MTT)试验评估,BSO预处理,特别是在较高剂量(25微米)下,导致对Cd细胞毒性敏感性的剂量依赖性增加。根据先前的研究,通过增加基因特异性mRNA水平来评估,低水平的Cd(1微米)会略微增加c-myc和c-jun的表达。GSH耗竭(5mum BSO)同样导致c-myc和c-jun表达增加。然而,GSH消耗和Cd暴露联合降低了c-myc和c-jun转录水平,远低于对照水平。这些结果表明,在BSO耗尽细胞GSH后,暴露于Cd导致的细胞毒性增加,消除了单独治疗后观察到的致癌基因激活。因此,Cd诱导的原癌基因表达似乎依赖于Cd诱导的细胞毒性的缺失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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