Liaoning Medical University, Jinzhou, Liaoning, China.
Chemosphere. 2013 Oct;93(6):1189-93. doi: 10.1016/j.chemosphere.2013.06.070. Epub 2013 Aug 12.
Bisphenol A (BPA), the important endocrine-disrupting chemical (EDC), has been reported to be able to induce various toxicity. The present study aims to understand the toxicity behavior of bisphenol A through evaluating the inhibition profile of bisphenol A towards UDP-glucuronosyltransferase (UGT) isoforms. In vitro recombinant UGTs-catalyzed 4-methylumbelliferone (4-MU) glucuronidation reaction was employed as probe reaction for all the tested UGT isoforms. The results showed that bisphenol A exerted stronger inhibition towards UGT2B isoforms than UGT1A isoforms. Furthermore, the inhibition kinetic type and parameters (K(i)) were determined for the inhibition of bisphenol A towards UGT2B4, 2B7, 2B15, and 2B17. Bisphenol A exhibited the competitive inhibition towards UGT2B4, and noncompetitive inhibition towards UGT2B7, 2B15 and 2B17. The inhibition kinetic parameters (K(i)) were calculated to be 1.1, 32.6, 5.6, and 19.9 μM for UGT2B4, 2B7, 2B15 and 2B17, respectively. In combination with the in vivo concentration of bisphenol A, the elevation of exposure dose was predicted to increase by 29.1%, 1%, 5.7%, and 1.6% for UGT2B4, 2B7, 2B15, and 2B17, indicating the high influence of bisphenol A towards the in vivo UGT2B isofroms-mediated metabolism of xenobiotics and endogenous substances. All these data provide the supporting information for deeper understanding of toxicology of bisphenol A.
双酚 A(BPA)作为一种重要的内分泌干扰化学物质(EDC),已被报道具有多种毒性。本研究旨在通过评估双酚 A 对 UDP-葡糖醛酸基转移酶(UGT)同工酶的抑制谱来了解双酚 A 的毒性行为。体外重组 UGTs 催化 4-甲基伞形酮(4-MU)葡糖醛酸化反应被用作所有测试 UGT 同工酶的探针反应。结果表明,双酚 A 对 UGT2B 同工酶的抑制作用强于 UGT1A 同工酶。此外,还确定了双酚 A 对 UGT2B4、2B7、2B15 和 2B17 的抑制动力学类型和参数(K(i))。双酚 A 对 UGT2B4 表现出竞争性抑制,对 UGT2B7、2B15 和 2B17 表现出非竞争性抑制。抑制动力学参数(K(i))分别计算为 1.1、32.6、5.6 和 19.9 μM 用于 UGT2B4、2B7、2B15 和 2B17。结合体内双酚 A 的浓度,预测 UGT2B4、2B7、2B15 和 2B17 的暴露剂量增加分别为 29.1%、1%、5.7%和 1.6%,表明双酚 A 对体内 UGT2B 同工酶介导的外源性物质和内源性物质代谢的影响较大。所有这些数据为深入了解双酚 A 的毒理学提供了支持信息。