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体外镉/锌-金属硫蛋白依赖性DNA损伤中自由基作为中间体的证据。

Evidence for radical species as intermediates in cadmium/zinc-metallothionein-dependent DNA damage in vitro.

作者信息

Müller T, Schuckelt R, Jaenicke L

机构信息

INBIFO Institut für biologische Forschung, Köln, Federal Republic of Germany.

出版信息

Environ Health Perspect. 1994 Sep;102 Suppl 3(Suppl 3):27-9. doi: 10.1289/ehp.102-1567369.

Abstract

Toxicologic data on cadmium (Cd) indicate that intracellular metallothionein (MT) is protective for Cd exposure, whereas extracellular Cd-containing MT might be toxic. Moreover, Cd is suspected to be a carcinogen though the underlying mechanism is not known. Here we report on the genotoxic activity of cadmium/zinc-metallothionein (Cd/Zn-MT) in a cell-free test system: a concentration-dependent increase in DNA strand breaks was detected with increasing doses of Cd/Zn-MT, whereas no DNA strand breaks were observed in the presence of heat-denatured MT or Cd or Zn ions alone. Modifications of native Cd/Zn-MT by the metal ion-chelating agent EDTA or the sulfhydryl group alkylating agents N-ethylmaleimide and iodoacetamide suggest that the various cysteine residues of MT, together with the attached heavy metal ions, may be involved in the DNA cleavage reaction. Furthermore, DNA strand breaks caused by Cd/Zn-MT seem more likely to be random than sequence- or base-specific. Results from experiments with radical scavengers and electron spin resonance spectroscopy point to radical species formed by Cd/Zn-MT as mediators of the DNA damage. Thus, the actual activity of Cd/Zn-MT--whether protective or damaging--appears to depend on various parameters governed by the extra- and intracellular environment.

摘要

镉(Cd)的毒理学数据表明,细胞内金属硫蛋白(MT)对镉暴露具有保护作用,而细胞外含镉的MT可能具有毒性。此外,镉被怀疑是一种致癌物,但其潜在机制尚不清楚。在此,我们报告了镉/锌金属硫蛋白(Cd/Zn-MT)在无细胞测试系统中的遗传毒性活性:随着Cd/Zn-MT剂量的增加,检测到DNA链断裂呈浓度依赖性增加,而在单独存在热变性MT、Cd或Zn离子的情况下未观察到DNA链断裂。金属离子螯合剂EDTA或巯基烷基化剂N-乙基马来酰亚胺和碘乙酰胺对天然Cd/Zn-MT的修饰表明,MT的各种半胱氨酸残基与附着的重金属离子可能参与了DNA切割反应。此外,Cd/Zn-MT引起的DNA链断裂似乎更可能是随机的,而不是序列特异性或碱基特异性的。自由基清除剂和电子自旋共振光谱实验结果表明,Cd/Zn-MT形成的自由基是DNA损伤的介质。因此,Cd/Zn-MT的实际活性——无论是保护性的还是损伤性的——似乎取决于细胞外和细胞内环境所控制的各种参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f34/1567369/e667a030171c/envhper00399-0037-a.jpg

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