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Biotransformation of 8:2 fluorotelomer alcohol by recombinant human cytochrome P450s, human liver microsomes and human liver cytosol

机译:重组人细胞色素P450,人肝微粒体和人肝细胞溶质对8:2含氟端粒醇的生物转化

摘要

Biotransformation of 8:2 fluorotelomer alcohol (8:2 FTOH) can form potentially more toxic metabolites. However, the responsible cytochrome P450 (CYP) isoform(s) and phase II metabolism have not been studied in humans. Here, we characterized the in vitro metabolism of 8:2 FTOH by recombinant human CYPs, human liver microsomes, and human liver cytosol. The results showed that among the 11 isoforms investigated, CYP2C19 was the only enzyme capable of catalyzing 8:2 FTOH with K-m and V-max values of 18.8 mu M and 8.52 pmol min(-1) pmol(-1) P450, respectively. The phase I metabolite was identified as 8:2 fluorotelomer aldehyde (8:2 FTAL). HLMs also catalyzed 8:2 FTOH transformation, with the V-max and intrinsic clearance (CLint) values similar to those of CYP2C19 after the protein content is taken into account. Molecular docking showed that the hydroxyl group of 8:2 FTOH accesses the heme iron-oxo of CYP2C19 in an energetically favored orientation. 8:2 FTOH was also transformed by phase II enzymes to form O-glucuronide and O-sulfate conjugates. The CLint values follow the order of sulfation oxidation glucuronidation, suggesting that conjugation is the major metabolic pathway, which explains the low yield of perfluoroalkyl acids (PFCAs). These results provide new insight into fluorotelomer alcohol biotransformation and indirect human exposure to PFCAs.
机译:8:2含氟端粒醇(8:2 FTOH)的生物转化可形成潜在的毒性更大的代谢物。但是,尚未在人类中研究负责任的细胞色素P450(CYP)同工型和II期代谢。在这里,我们表征了重组人CYP,人肝微粒体和人肝细胞质溶胶对8:2 FTOH的体外代谢。结果显示,在所研究的11种同工型中,CYP2C19是唯一能够催化8:2 FTOH的酶,K-m和V-max值分别为18.8μM和8.52 pmol min(-1)pmol(-1)P450。 I期代谢物被鉴定为8:2氟调聚物醛(8:2 FTAL)。考虑到蛋白质含量后,HLM还催化了8:2 FTOH转化,其V-max和固有清除率(CLint)值与CYP2C19相似。分子对接表明,8:2 FTOH的羟基以能量有利的方向进入CYP2C19的血红素铁-氧代。 8:2 FTOH也被II期酶转化,形成O-葡糖醛酸苷和O-硫酸盐结合物。 CLint值遵循硫酸化>氧化>葡萄糖醛酸化的顺序,这表明缀合是主要的代谢途径,这说明了全氟烷基酸(PFCA)的收率低。这些结果为氟代端基醇的生物转化和人类对PFCA的间接暴露提供了新的见识。

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