首页> 外文期刊>Mutagenesis >Bleomycin genotoxicity alteration by glutathione and cytochrome P-450 cellular content in respiratory proficient and deficient strains of Saccharomyces cerevisiae.
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Bleomycin genotoxicity alteration by glutathione and cytochrome P-450 cellular content in respiratory proficient and deficient strains of Saccharomyces cerevisiae.

机译:谷胱甘肽和细胞色素P-450细胞含量对呼吸道熟练的酿酒酵母菌株的博来霉素遗传毒性改变。

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摘要

The genotoxic effects of the antiblastic drug bleomycin were studied in the D7 strain of Saccharomyces cerevisiae and on its derivative mitochondrial mutant rho degree at different cellular concentrations of two drug metabolizing systems, glutathione (GSH) and cytochrome P-450. Bleomycin mutagenic activity was evaluated as frequencies of mitotic gene conversion, reversion and total aberrations under different physiological conditions. In the D7 strain, petite mutant induction was also detected. This is important due to the role of the mitochondrial genome in cancer induction, ageing and degenerative diseases. Both strains showed higher convertant than revertant induction. At high cytochrome P-450 levels, bleomycin-induced gene conversion was enhanced in both strains although mitochondrial functionality showed a detoxicant role while cellular GSH content decreased the induction of convertants only in the respiratory proficient strain. Cell metabolic conditions, such as cell cycle, aerobic/hypoxic conditions of the cell and content of drug metabolizing enzymes, appeared to interact with the genotoxic effectiveness of bleomycin. Moreover, the usefulness of S.cerevisiae as a model organism for drug assessment for mutagenicity was emphasized.
机译:在两种药物代谢系统谷胱甘肽(GSH)和细胞色素P-450的不同细胞浓度下,研究了抗生药博来霉素在啤酒酵母D7菌株及其线粒体突变体rho度中的遗传毒性作用。博莱霉素诱变活性被评估为在不同生理条件下的有丝分裂基因转化,回复和总畸变的频率。在D7菌株中,还检测到小突变体诱导。由于线粒体基因组在癌症诱导,衰老和变性疾病中的作用,这一点很重要。两种菌株均显示出比回复诱导更高的转化率。在高细胞色素P-450水平下,尽管线粒体功能显示出脱毒作用,但博莱霉素诱导的基因转化在两种菌株中均得到增强,而细胞GSH含量仅在呼吸熟练的菌株中降低了转化子的诱导。细胞代谢条件,例如细胞周期,细胞的需氧/低氧条件和药物代谢酶的含量,似乎与博来霉素的遗传毒性作用相互作用。此外,强调了酿酒酵母作为用于评估致突变性的模型生物的有用性。

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