Youn Cha-Kyung, Kim Soo-Hyun, Lee Do Young, Song Seung Hee, Chang In-Youb, Hyun Jin-Won, Chung Myung-Hee, You Ho Jin
Department of Pharmacology, School of Medicine, Chosun University, 375 Seosuk-dong, Gwangju 501-759, Korea.
J Biol Chem. 2005 Jul 1;280(26):25185-95. doi: 10.1074/jbc.M412793200. Epub 2005 Mar 9.
Cadmium is a well known human and animal carcinogen and is a ubiquitous contaminant in the environment. Although the carcinogenic mechanism of cadmium is a multifactorial process, oxidative DNA damage is believed to be of prime importance. In particular, cadmium suppresses the capacity of cells to repair oxidative DNA damage. In this study, cadmium treatment led to a significant increase in gamma-ray-induced 8-oxoguanine (8-oxoG) formation. Western blotting and semiquantitative reverse transcription-PCR revealed that cadmium treatment caused a decrease in the expression level of human OGG1 (8-oxoguanine-DNA glycosylase-1; hOGG1) in human fibroblast GM00637 and HeLa S3 cells. In addition, the cadmium-mediated decrease in hOGG1 transcription was the result of decreased binding of the transcription factor Sp1 to the hOGG1 promoter. Finally, we show that an increase in the functional hOGG1 expression level could inhibit the cadmium-mediated increase in gamma-ray-induced 8-oxoG accumulation as well as in gamma-radiation-induced mutation frequency at the HPRT (hypoxanthine-guanine phosphoribosyltransferase) gene locus. These results suggest that cadmium attenuates removal of gamma-ray-induced 8-oxoG adducts, which in turn increases the mutation frequency, and that this effect might, at least in part, result from suppression of hOGG1 transcription via inactivation of Sp1 as a result of cadmium treatment.
镉是一种广为人知的人类和动物致癌物,是环境中普遍存在的污染物。尽管镉的致癌机制是一个多因素过程,但氧化DNA损伤被认为至关重要。特别是,镉会抑制细胞修复氧化DNA损伤的能力。在本研究中,镉处理导致γ射线诱导的8-氧代鸟嘌呤(8-oxoG)形成显著增加。蛋白质印迹法和半定量逆转录聚合酶链反应显示,镉处理导致人成纤维细胞GM00637和HeLa S3细胞中人类OGG1(8-氧代鸟嘌呤-DNA糖基化酶-1;hOGG1)的表达水平降低。此外,镉介导的hOGG1转录减少是转录因子Sp1与hOGG1启动子结合减少的结果。最后,我们表明功能性hOGG1表达水平的增加可以抑制镉介导的γ射线诱导的8-oxoG积累增加以及HPRT(次黄嘌呤-鸟嘌呤磷酸核糖转移酶)基因位点的γ辐射诱导的突变频率增加。这些结果表明,镉减弱了γ射线诱导的8-oxoG加合物的去除,进而增加了突变频率,并且这种效应可能至少部分是由于镉处理导致Sp1失活从而抑制hOGG1转录所致。