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首页> 外文期刊>Archives of Toxicology >The polymorphism rs2480258 within CYP2E1 is associated with different rates of acrylamide metabolism in vivo in humans
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The polymorphism rs2480258 within CYP2E1 is associated with different rates of acrylamide metabolism in vivo in humans

机译:CYP2E1中的多态性RS2480258与人类体内丙烯酰胺代谢的不同率相关

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In a recent study, we demonstrated that the variant allele of rs2480258 within intron VIII of CYP2E1 is associated with reduced levels of mRNA, protein, and enzyme activity. CYP2E1 is the most important enzyme in the metabolism of acrylamide (AA) by operating its oxidation into glycidamide (GA). AA occurs in food, is neurotoxic and classified as a probable human carcinogen. The goal of the present study was to further assess the role of rs2480258 by measuring the rate of AA GA biotransformation in vivo. In blood samples from a cohort of 120 volunteers, the internal doses of AA and GA were assessed by AA and GA adducts to hemoglobin (Hb) measured by mass spectrometry. The rate of biotransformation was assessed by calculating the GA-Hb/AA-Hb ratio. To maximize the statistical power, 60 TT was compared to 60 CC-homozygotes and the results showed that TT homozygotes had a statistically significant reduced rate of biotransformation. Present results reinforced the notion that T-allele of rs2480258 is a marker of low functional activity of CYP2E1. Moreover, we studied the role of polymorphisms (SNPs) within glutathione-S-transferases (GSTs) enzymes and epoxide hydrolase (EPHX), verifying previous findings that SNPs within GSTs and EPHX influence the metabolism rate.
机译:在最近的一项研究中,我们证明CYP2E1的Intron VIII内的RS2480258的变异等位基因与mRNA,蛋白质和酶活性的降低相关。 CYP2E1是通过将其氧化成丙酰胺(GA)的丙烯酰胺(AA)来代谢中最重要的酶。 AA发生在食物中,是神经毒性的,并且被归类为可能的人类致癌物。本研究的目标是通过测量AA&gt的速率进一步评估RS2480258的作用; GA Biotro ransformation体内。在来自120个志愿者的群组的血液样本中,通过质谱法测量的AA和GA加合物评估内部剂量AA和GA与血红蛋白(HB)评估。通过计算Ga-Hb / AA-Hb比率评估生物转化率。为了使统计功率最大化,将60 tT与60cc-纯合蛋白进行比较,结果表明,TT纯合子具有统计上显着降低的生物转化率。目前的结果加强了RS2480258的T-等位基因是CYP2E1的低功能活性的标志物。此外,我们研究了多态性(SNP)在谷胱甘肽-S-转移酶(GSTS)酶和环氧化物水解酶(EPH1)中的作用,验证了先前的发现,即GSTS和EPHX内的SNP影响了代谢率。

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