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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Influence of GSTT1, mEH, CYP2E1 and RAD51 polymorphisms on diepoxybutane-induced SCE frequency in cultured human lymphocytes.
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Influence of GSTT1, mEH, CYP2E1 and RAD51 polymorphisms on diepoxybutane-induced SCE frequency in cultured human lymphocytes.

机译:GSTT1,mEH,CYP2E1和RAD51基因多态性对培养的人淋巴细胞中由二环氧丁烷诱导的SCE频率的影响。

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摘要

1,3-Butadiene (BD) is a common chemical in the human environment. Diepoxybutane (DEB) is the most reactive epoxide metabolite of BD. The aim of the present study was to evaluate the influence of polymorphisms in enzymes operating in DEB-metabolism (epoxide hydrolase mEH, CYP2E1 and GSTT1), as well as in the DNA-repair enzyme RAD51, on the frequency of sister chromatid exchange (SCE) induced by DEB in lymphocyte cultures from 63 healthy donors. Their genotypes were determined using PCR and restriction fragment length polymorphism (RFLP)-PCR techniques. The analysis of xenobiotic-metabolizing genes revealed that GSTT1 and CYP2E1 polymorphisms have an influence on DEB-induced SCE frequency. Individuals with the GSTT1 null genotype and CYP2E1 c2 variant allele heterozygotes were observed to have significantly higher SCE frequency than individuals with more common genotypes. A correlation between sensitivity to DEB and GSTT1 null genotype indicates that this pathway is a major detoxification step in DEB metabolism in whole-blood lymphocyte cultures, which has been shown in many studies. The analysis of combined polymorphisms indicated that, in the presence of GSTT1, a significantly higher DEB-induced SCE frequency is observed in the CYP2E1 c2 variant allele heterozygotes than in individuals with the most common CYP2E1 genotype. In the absence of GSTT1, however, the CYP2E1 polymorphism has no influence on DEB-induced SCEs. A significant difference was also observed between individuals characterized by low and high mEH activity, but only in subjects with the GSTT1 null genotype. Lack of GSTT1 resulted in higher SCE frequency in individuals with mEH high-activity genotypes than in individuals with mEH low-activity genotype. In the present study no statistically significant difference in DEB-induced SCEs was observed for the RAD51 polymorphism. The influence of GSTT1 genotype on SCE-frequency in RAD51 variant allele carriers was not analysed as all individuals in this group (except one person) had the GSTT1 genepresent. Our study shows that the combined analysis of polymorphisms in metabolizing enzymes may lead to a better understanding of their contribution to an individual's susceptibility to DEB.
机译:1,3-丁二烯(BD)是人类环境中的常见化学物质。二环氧丁烷(DEB)是BD最具反应性的环氧代谢产物。本研究的目的是评估在DEB代谢中起作用的酶(环氧水解酶mEH,CYP2E1和GSTT1)以及DNA修复酶RAD51中的多态性对姐妹染色单体交换(SCE)频率的影响由DEB在63位健康供体的淋巴细胞培养物中诱导。使用PCR和限制性片段长度多态性(RFLP)-PCR技术确定了它们的基因型。对异源代谢基因的分析表明,GSTT1和CYP2E1多态性对DEB诱导的SCE频率有影响。观察到具有GSTT1无效基因型和CYP2E1 c2变异等位基因杂合子的个体的SCE频率明显高于具有更常见基因型的个体。对DEB的敏感性和GSTT1无效基因型之间的相关性表明,该途径是全血淋巴细胞培养中DEB代谢的主要解毒步骤。组合多态性的分析表明,在存在GSTT1的情况下,与具有最常见CYP2E1基因型的个体相比,在CYP2E1 c2变体等位基因杂合子中观察到DEB诱导的SCE频率明显更高。然而,在没有GSTT1的情况下,CYP2E1多态性对DEB诱导的SCEs没有影响。在特征为低和高mEH活性的个体之间也观察到显着差异,但仅在具有GSTT1无效基因型的受试者中。缺少GSTT1导致mEH高活性基因型个体的SCE频率高于mEH低活性基因型个体。在本研究中,未观察到RAD51多态性在DEB诱导的SCE中有统计学上的显着差异。没有分析GSTT1基因型对RAD51变异等位基因携带者中SCE频率的影响,因为该组中的所有个体(一个人除外)都存在GSTT1基因。我们的研究表明,代谢酶中多态性的综合分析可能会导致人们更好地理解其对个体对DEB的敏感性。

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