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首页> 外文期刊>Chemical research in toxicology >The equine estrogen metabolite 4-hydroxyequilenin causes DNA single-strand breaks and oxidation of DNA bases in vitro.
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The equine estrogen metabolite 4-hydroxyequilenin causes DNA single-strand breaks and oxidation of DNA bases in vitro.

机译:马雌激素代谢物4-羟基马鞭毛蛋白在体外引起DNA单链断裂和DNA碱基的氧化。

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摘要

Premarin (Wyeth-Ayerst) is the estrogen replacement treatment of choice and continues to be one of the most widely dispensed prescriptions in North America. In addition to endogenous estrogens, Premarin contains unsaturated equine estrogens, including equilenin [1,3,5(10),6,8-estrapentaen-3-ol-17-one]. In previous work, we showed that the equilenin metabolite 4-hydroxyequilenin (4-OHEN) can be autoxidized to 4-OHEN-o-quinone which readily entered into a redox couple with the semiquinone radical catalyzed by NAD(P)H, P450 reductase, or quinone reductase, resulting in generation of reactive oxygen species [Shen, L., Pisha, E., Huang, Z., Pezzuto, J. M., Krol, E., Alam, Z., van Breemen, R. B., and Bolton, J. L. (1997) Carcinogenesis 18, 1093-1101]. As oxidative damage to DNA by reactive oxygen species generated by redox active compounds has been proposed to lead to tumor formation, we investigated whether 4-OHEN could cause DNA damage. We treated lambda phage DNA with 4-OHEN and found that extensive single-strand breaks could be obtained with increasing concentrations of 4-OHEN as well as increasing incubation times. If scavengers of reactive oxygen species are included in the incubations, DNA could be completely protected from 4-OHEN-mediated damage. In contrast, NADH and CuCl2 enhanced the ability of 4-OHEN to cause DNA single-strand breaks presumably due to redox cycling between 4-OHEN and the semiquinone radical generating hydrogen peroxide and ultimately copper peroxide complexes. We also confirmed that 4-OHEN could oxidize DNA bases since hydrolysis of 4-OHEN-treated calf thymus DNA and HPLC separation with electrospray MS detection revealed oxidized deoxynucleosides, including 8-oxodeoxyguanosine and 8-oxodeoxyadenosine. Our data suggest that DNA single-strand breaks and oxidation of DNA bases by 4-OHEN could contribute to the carcinogenic mechanism(s) of equine estrogens.
机译:Premarin(Wyeth-Ayerst)是一种选择的雌激素替代疗法,并且仍然是北美地区使用最广泛的处方之一。除内源性雌激素外,普力马还含有不饱和马雌激素,包括马来宁[1,3,5(10),6,8-estrapentaen-3-ol-17-one]。在先前的工作中,我们显示了马鞭草素代谢物4-羟基马鞭草酮(4-OHEN)可以自氧化为4-OHEN-o-醌,它容易与NAD(P)H,P450还原酶催化的半醌自由基进入氧化还原对。 ,或醌还原酶,导致产生活性氧[Shen,L.,Pisha,E.,Huang,Z.,Pezzuto,JM,Krol,E.,Alam,Z.,van Breemen,RB和Bolton, JL(1997)Carcinogenesis 18,1093-1101]。由于已经提出氧化还原活性化合物产生的活性氧对DNA的氧化损伤会导致肿瘤形成,因此我们研究了4-OHEN是否会引起DNA损伤。我们用4-OHEN处理λ噬菌体DNA,发现随着4-OHEN浓度的增加以及孵育时间的增加,可以获得广泛的单链断裂。如果孵育中包含活性氧清除剂,则可以完全保护DNA免受4-OHEN介导的破坏。相比之下,NADH和CuCl2增强了4-OHEN引起DNA单链断裂的能力,大概是由于4-OHEN与半醌自由基之间的氧化还原循环产生了过氧化氢和最终的过氧化铜络合物。我们还确认了4-OHEN可以氧化DNA碱基,因为4-OHEN处理的小牛胸腺DNA的水解和电喷雾MS检测的HPLC分离显示了氧化的脱氧核苷,包括8-氧代脱氧鸟苷和8-氧代脱氧腺苷。我们的数据表明,DNA单链断裂和4-OHEN对DNA碱基的氧化可能有助于马雌激素的致癌机理。

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