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首页> 外文期刊>Life sciences >Glucuronidation of haloperidol by rat liver microsomes: involvement of family 2 UDP-glucuronosyltransferases
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Glucuronidation of haloperidol by rat liver microsomes: involvement of family 2 UDP-glucuronosyltransferases

机译:大鼠肝脏微粒体对氟哌啶醇的葡糖醛酸化作用:家族2 UDP-葡糖醛酸糖基转移酶的参与

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摘要

The purposes of this study were to develop a HPLC method to assay for haloperidol glucuronide (HALG); to apply this assay method to the in vitro determination of haloperidol (HAL) UDP-glucuronosyltransferase (UGT) enzyme kinetics in rat liver microsomes (RLM); and to identify the UGT isoforms catalyzing glucuronidation of HAL in rats. Incubation of Brij-activated RLM with HAL and UDP-glucuronic acid (UDPGA) in TRIS pH 7.4 buffer resulted in the formation of a single peak in the HPLC chromatogram at 270 nm. The identity of this peak was confirmed to be that of HALG by 1) beta-glucuronidase hydrolysis; 2) incubation without UDPGA; 3) UV spectral analysis; and 4) LC/MS/MS to yield the expected mass of 552.1. Enzyme kinetic studies using single enzyme Michaelis-Menton model showed an apparent V-max = 271.9 +/- 10.1 pmoles min(-1) mg protein(-1) and K-m = 61 +/- 7.2 muM. Glucuronidation activity in homozygous Gunn j/j) rats was approximately 80% as compared to Sprague-Dawley RLM. HALG formation was approximately doubled in PB-induced RLM. There was no increase in glucuronidation activities in 3MC-induced RLM. The Gunn rat and the PB-induced RLM data suggest predominant but not exclusive involvement of the UGT2B family in the formation of HALG. Because the UGTs exhibit overlapping substrate specificities and most substrates are glucuronidated by more than one isoform, inhibition studies with UGT2B1 substrate probe testosterone and the UGT2B12 substrate probe borneol were conducted. UGT2B1 and UGT2B12 exhibited 40% and 90% inhibition of HAL glucuronidation, respectively. Thus, UGT2B12 and UGT2B1 isoforms are responsible for catalyzing HAL glucuronidation in rats. Our HPLC assay provides a specific and sensitive technique for the measurement of in vitro HAL-UGT activity. (C) 2004 Elsevier Inc. All rights reserved. [References: 21]
机译:这项研究的目的是开发一种HPLC方法来测定氟哌啶醇葡糖苷酸(HALG)的含量;将这种测定方法用于体外测定大鼠肝微粒体(RLM)中的氟哌啶醇(HAL)UDP-葡萄糖醛糖基转移酶(UGT)酶动力学;并鉴定UGT同工型可催化大鼠HAL的葡萄糖醛酸化。将Brij活化的RLM与HAL和UDP-葡糖醛酸(UDPGA)在TRIS pH 7.4缓冲液中孵育导致HPLC色谱图中270 nm处形成一个单峰。通过1)β-葡糖醛酸糖苷酶水解,证实该峰的身份与HALG相同。 2)没有UDPGA的孵育; 3)紫外光谱分析; 4)LC / MS / MS得到预期质量552.1。使用单一酶Michaelis-Menton模型的酶动力学研究表明,表观V-max = 271.9 +/- 10.1 pmoles min(-1)mg蛋白质(-1),K-m = 61 +/- 7.2μM。与Sprague-Dawley RLM相比,纯合的Gunn(j / j)大鼠中的葡萄糖醛酸化活性约为80%。在PB诱导的RLM中,HALG的形成大约增加了一倍。在3MC诱导的RLM中,葡糖醛酸化活性没有增加。 Gunn大鼠和PB诱导的RLM数据表明,UGT2B家族主要但非排他地参与了HALG的形成。由于UGTs表现出重叠的底物特异性,并且大多数底物被一种以上的同工型葡萄糖苷酸化,因此进行了UGT2B1底物探针睾丸激素和UGT2B12底物探针冰片的抑制研究。 UGT2B1和UGT2B12分别对HAL葡萄糖醛酸化表现出40%和90%的抑制作用。因此,UGT2B12和UGT2B1同工型负责催化大鼠中的HAL糖醛酸苷化。我们的HPLC分析为体外HAL-UGT活性的测量提供了一种特异性和灵敏的技术。 (C)2004 Elsevier Inc.保留所有权利。 [参考:21]

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