Department of Veterinary Sciences, University of Turin, 10095 Grugliasco, Italy.
Department of Comparative Biomedicine and Food Science, University of Padua, 35020 Agripolis Legnaro, Italy.
Int J Mol Sci. 2022 Mar 24;23(7):3564. doi: 10.3390/ijms23073564.
In cattle, phenobarbital (PB) upregulates target drug-metabolizing enzyme (DME) mRNA levels. However, few data about PB's post-transcriptional effects are actually available. This work provides the first, and an almost complete, characterization of PB-dependent changes in DME catalytic activities in bovine liver using common probe substrates and confirmatory immunoblotting investigations. As expected, PB increased the total cytochrome P450 (CYP) content and the extent of metyrapone binding; moreover, an augmentation of protein amounts and related enzyme activities was observed for known PB targets such as CYP2B, 2C, and 3A, but also CYP2E1. However, contradictory results were obtained for CYP1A, while a decreased catalytic activity was observed for flavin-containing monooxygenases 1 and 3. The barbiturate had no effect on the chosen hydrolytic and conjugative DMEs. For the first time, we also measured the 26S proteasome activity, and the increase observed in PB-treated cattle would suggest this post-translational event might contribute to cattle DME regulation. Overall, this study increased the knowledge of cattle hepatic drug metabolism, and further confirmed the presence of species differences in DME expression and activity between cattle, humans, and rodents. This reinforced the need for an extensive characterization and understanding of comparative molecular mechanisms involved in expression, regulation, and function of DMEs.
在牛中,苯巴比妥(PB)上调靶药物代谢酶(DME)mRNA 水平。然而,实际上关于 PB 的转录后效应的数据很少。本研究使用常见的探针底物和确证性免疫印迹研究,首次对牛肝中 PB 依赖性 DME 催化活性变化进行了几乎完整的表征。正如预期的那样,PB 增加了总细胞色素 P450(CYP)含量和米妥坦结合程度;此外,还观察到已知 PB 靶标(如 CYP2B、2C 和 3A,但也包括 CYP2E1)的蛋白量和相关酶活性增加。然而,对于 CYP1A 却得到了相反的结果,而黄素单加氧酶 1 和 3 的催化活性则降低。该巴比妥类药物对所选水解和结合 DME 没有影响。我们首次测量了 26S 蛋白酶体的活性,在 PB 处理的牛中观察到的增加表明这种翻译后事件可能有助于牛 DME 的调节。总的来说,这项研究增加了对牛肝药物代谢的认识,并进一步证实了牛、人和啮齿动物之间 DME 表达和活性的物种差异的存在。这强化了需要对 DME 的表达、调节和功能涉及的比较分子机制进行广泛的表征和理解。