Department of Chemistry, Hong Kong Baptist University, Hong Kong SAR, China.
Chemosphere. 2012 Feb;86(7):727-34. doi: 10.1016/j.chemosphere.2011.10.047. Epub 2011 Nov 26.
Polybrominated diphenyl ethers (PBDEs) can be metabolically converted to their hydroxylated metabolites (OH-PBDEs). The estrogenic effects of PBDEs may be mediated by OH-PBDEs, but the mechanisms of which are still not understood. This study investigated the glucuronidation of 11 OH-PBDEs and their potential in modulating UDP-glucuronosyltransferases (UGTs) activity of 17β-estradiol (E2) in rat liver microsomes. The number of bromine atoms at phenolic ring was observed as the most influential factor of OH-PBDEs glucuronidation. 2'-OH-BDE-28 having one bromine atom at phenolic ring showed the fastest metabolic rates with t(1/2) value of 3.86 min, while 6-OH-BDE-137 having four bromine atoms at phenolic ring was the poorest substrate with t(1/2) value over 60 min. Regarding to the modulation of E2-UGTs activity, the phenolic hydroxyl group in OH-PBDEs played an essential role. Depending on the substitution patterns of bromine and hydroxyl group, OH-PBDEs inhibited or stimulated E2-UGTs activity. Ten of OH-PBDEs inhibited both 3-glucuronidation and 17-glucuronidation of E2 with IC(50) values varying from 3.80 to 129.38 μM, while 3'-OH-BDE-100 exhibited stimulating effects on 3-glucuronidation with EC(50) value of 35.95 μM. Kinetic analysis suggested noncompetitive inhibition mode of E2 glucuronidation by 3'-OH-BDE-7, 6-OH-BDE-47 and 2'-OH-BDE-68 with K(i) values varying from 11.95 to 67.22 μM. This study demonstrated OH-PBDEs exhibited large interindividual differences in glucuronidation and modulation of E2-UGTs activity. By inhibiting the formation of E2 glucuronidation, OH-PBDEs may increase E2 bioavailability in target tissue, thereby exerting an indirect estrogenic effect.
多溴联苯醚(PBDEs)可以在代谢过程中转化为其羟基代谢物(OH-PBDEs)。PBDEs 的雌激素效应可能通过 OH-PBDEs 介导,但机制尚不清楚。本研究探讨了 11 种 OH-PBDEs 的葡萄糖醛酸化及其对大鼠肝微粒体中 17β-雌二醇(E2)UDP-葡萄糖醛酸转移酶(UGTs)活性的潜在调节作用。酚环上溴原子的数量被观察为影响 OH-PBDEs 葡萄糖醛酸化的最主要因素。酚环上有一个溴原子的 2'-OH-BDE-28 表现出最快的代谢速率,t(1/2)值为 3.86 分钟,而酚环上有四个溴原子的 6-OH-BDE-137 是最不理想的底物,t(1/2)值超过 60 分钟。关于对 E2-UGTs 活性的调节,OH-PBDEs 中的酚羟基起关键作用。根据溴和羟基的取代模式,OH-PBDEs 抑制或刺激 E2-UGTs 活性。有 10 种 OH-PBDEs 对 E2 的 3-葡萄糖醛酸化和 17-葡萄糖醛酸化均具有抑制作用,IC(50)值范围为 3.80 至 129.38 μM,而 3'-OH-BDE-100 对 3-葡萄糖醛酸化具有刺激作用,EC(50)值为 35.95 μM。动力学分析表明,3'-OH-BDE-7、6-OH-BDE-47 和 2'-OH-BDE-68 对 E2 葡萄糖醛酸化的抑制作用为非竞争性抑制模式,K(i)值范围为 11.95 至 67.22 μM。本研究表明,OH-PBDEs 在葡萄糖醛酸化和 E2-UGTs 活性的调节方面存在较大的个体间差异。通过抑制 E2 葡萄糖醛酸化的形成,OH-PBDEs 可能会增加靶组织中 E2 的生物利用度,从而发挥间接雌激素作用。