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Metabolism of bilirubin by human cytochrome P450 2A6

机译:人细胞色素P450 2A6代谢胆红素

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The mouse cytochrome P450 (CYP) 2A5 has recently been shown to function as hepatic "Bilirubin Oxidase" (Abu-Bakar, A., et al., 2011. Toxicol. Appl. Pharmacol. 257, 14-22). To date, no information is available on human CYP isoforms involvement in bilirubin metabolism. In this paper we provide novel evidence for human CYP2A6 metabolising the tetrapyrrole bilirubin. Incubation of bilirubin with recombinant yeast microsomes expressing the CYP2A6 showed that bilirubin inhibited CYP2A6-dependent coumarin 7-hydroxylase activity to almost 100% with an estimated K i of 2.23μM. Metabolite screening by a high-performance liquid chromatography/electrospray ionisation mass spectrometry indicated that CYP2A6 oxidised bilirubin to biliverdin and to three other smaller products with m/z values of 301, 315 and 333. Molecular docking analyses indicated that bilirubin and its positively charged intermediate interacted with key amino acid residues at the enzyme's active site. They were stabilised at the site in a conformation favouring biliverdin formation. By contrast, the end product, biliverdin was less fitting to the active site with the critical central methylene bridge distanced from the CYP2A6 haem iron facilitating its release. Furthermore, bilirubin treatment of HepG2 cells increased the CYP2A6 protein and activity levels with no effect on the corresponding mRNA. Co-treatment with cycloheximide (CHX), a protein synthesis inhibitor, resulted in increased half-life of the CYP2A6 compared to cells treated only with CHX. Collectively, the observations indicate that the CYP2A6 may function as human "Bilirubin Oxidase" where bilirubin is potentially a substrate and a regulator of the enzyme.
机译:小鼠细胞色素P450(CYP)2A5最近被证明具有肝“胆红素氧化酶”的功能(Abu-Bakar,A.,et al。,2011. Toxicol。Appl。Pharmacol。257,14-22)。迄今为止,尚无关于人CYP亚型参与胆红素代谢的信息。在本文中,我们为人CYP2A6代谢四吡咯胆红素提供了新的证据。将胆红素与表达CYP2A6的重组酵母微粒体一起温育表明,胆红素将CYP2A6依赖性香豆素7-羟化酶活性抑制至几乎100%,估计K i为2.23μM。通过高效液相色谱/电喷雾电离质谱对代谢物进行筛选,结果表明CYP2A6将胆红素氧化为胆绿素和其他三个m / z值为301、315和333的较小产物。分子对接分析表明胆红素及其带正电荷的中间体在酶的活性位点与关键氨基酸残基相互作用。它们以有利于胆绿素形成的构象稳定在位点。相比之下,最终产品biliverdin的关键中心亚甲基桥与CYP2A6血红素铁之间的距离较短,从而使其释放不易适应活性位点。此外,胆红素治疗HepG2细胞可增加CYP2A6蛋白和活性水平,而对相应的mRNA无影响。与仅用CHX处理的细胞相比,与蛋白质合成抑制剂环己酰亚胺(CHX)共同处理导致CYP2A6的半衰期延长。总体而言,观察结果表明CYP2A6可能起人“胆红素氧化酶”的作用,其中胆红素可能是该酶的底物和调节剂。

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