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CYP2C 和 CYP2B 介导的反式千金子二烯醇在 Cyp3a 敲除小鼠中的代谢激活。

CYP2C and CYP2B Mediated Metabolic Activation of Retrorsine in Cyp3a Knockout Mice.

机构信息

Centre for Drug Metabolism and Pharmacokinetics Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 501 Haike Road, Shanghai, 201203, China.

出版信息

Curr Drug Metab. 2020;21(13):1040-1051. doi: 10.2174/1389200221666201202101715.

Abstract

BACKGROUND

Retrorsine is one of the hepatotoxic pyrrolizidine alkaloids, which could be converted into a highly reactive metabolite, dehydroretrorsine, by CYP3A, and to a lesser extent by CYP2C and CYP2B.

OBJECTIVE

We employed Cyp3a knockout (3AKO) mice to investigate whether the absence of CYP3A could attenuate dehydroretrorsine formation and the role of CYP2C and CYP2B in the formation.

METHODS

Blood and liver samples were collected after intragastrical administration of 35 mg/kg retrorsine or saline for seven days in wild-type (WT) and 3AKO mice. Blood pyrrole-protein adducts were semi quantified by high-performance liquid chromatography/quadrupole time-of-flight mass spectrometry. The formations of glutathionyl-6,7-dihydro-1-hydroxymethyl-5H-pyrrolizine (GSH-DHP) and the activities of CYP3A, CYP2B and CYP2C were evaluated in the liver microsomes of WT and 3AKO mice before and after treatment. The metabolic phenotype of retrorsine was determined in human liver microsomes. The gene and protein expression of retrorsine metabolism-related CYP450s in the liver was measured by quantitative real-time PCR method and western blotting method. The serum cytokine level was detected by the ELISA method to reveal the potential mechanism of Cyp3a, Cyp2b and Cyp2c downregulation.

RESULTS

After an oral administration of 35 mg/kg retrorsine for seven days, the blood exposures of DHP adducts between WT and 3AKO mice were similar, consistent with the comparable formation of GSH-DHP in their liver microsomes. The chemical inhibitor experiment in liver microsomes indicated the predominant role of CYP3A and CYP2C in GSH-DHP formation in WT and 3AKO mice, respectively. Real-time qPCR analysis showed that the expressions of Cyp2b10 and Cyp2cs increased 2.3-161-fold in 3AKO mice, which was consistent with protein changes. The increased CYP2B activity in 3AKO mice supported the potential role of CYP2B in GSH-DHP formation. After a seven-day treatment of retrorsine, the yields of GSH-DHP were lower than the untreated ones in both alleles, accompanied by the decreased mRNA of Cyp3a, Cyp2b and Cyp2c. The increased serum IL6 might mediate the retrorsine-induced downregulation of Cyp450s.

CONCLUSION

These data demonstrated the increased transcription of Cyp2c and Cyp2b caused by Cyp3a ablation, which played a vital role in the metabolic activation of retrorsine, and long-term exposure of retrorsine can reduce the CYP450 activities.

摘要

背景

retrorsine 是一种肝毒性吡咯里西啶生物碱,可被 CYP3A 转化为高度反应性代谢物脱氢 retrorsine,并在较小程度上被 CYP2C 和 CYP2B 转化。

目的

我们使用 Cyp3a 敲除(3AKO)小鼠来研究 CYP3A 的缺失是否可以减弱脱氢 retrorsine 的形成以及 CYP2C 和 CYP2B 在形成中的作用。

方法

在野生型(WT)和 3AKO 小鼠中,通过灌胃给予 35mg/kg retrorsine 或生理盐水,连续 7 天,采集血液和肝脏样本。采用高效液相色谱/四极杆飞行时间质谱法对半定量测定血液吡咯蛋白加合物。在 WT 和 3AKO 小鼠肝微粒体中,评价 GSH-DHP 的形成和 CYP3A、CYP2B 和 CYP2C 的活性,分别在治疗前后。用人肝微粒体测定 retrorsine 的代谢表型。采用实时定量 PCR 法和 Western blotting 法测定肝内 retrorsine 代谢相关 CYP450s 的基因和蛋白表达。采用 ELISA 法检测血清细胞因子水平,揭示 Cyp3a、Cyp2b 和 Cyp2c 下调的潜在机制。

结果

在口服给予 35mg/kg retrorsine 连续 7 天,WT 和 3AKO 小鼠血液 DHP 加合物暴露量相似,与肝微粒体中 GSH-DHP 的形成相似。肝微粒体的化学抑制剂实验表明,CYP3A 和 CYP2C 在 WT 和 3AKO 小鼠 GSH-DHP 形成中分别起主要作用。实时 qPCR 分析显示,3AKO 小鼠中 Cyp2b10 和 Cyp2cs 的表达增加了 2.3-161 倍,与蛋白变化一致。3AKO 小鼠中 CYP2B 活性增加支持 CYP2B 在 GSH-DHP 形成中的潜在作用。经过 7 天 retrorsine 处理,与未处理组相比,GSH-DHP 的产率均降低,同时伴有 Cyp3a、Cyp2b 和 Cyp2c 的 mRNA 减少。血清中增加的 IL6 可能介导了 retrorsine 诱导的 Cyp450s 下调。

结论

这些数据表明,Cyp3a 缺失导致 Cyp2c 和 Cyp2b 的转录增加,这在 retrorsine 的代谢激活中起着至关重要的作用,而长期暴露于 retrorsine 会降低 CYP450 的活性。

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