Department of Biotechnology, Faculty of Engineering, Toyama Prefectural University 5180 Kurokawa, Imizu, Toyama, 939-0398, Japan.
Development Nourishment Department, Soai University 4-4-1 Nankonaka, Suminoe, Osaka, 559-0033, Japan.
Pharmacol Res Perspect. 2015 Mar;3(2):e00120. doi: 10.1002/prp2.120. Epub 2015 Feb 10.
The metabolism of eldecalcitol (ED-71), a 2β-hydroxypropoxylated analog of the active form of vitamin D3 was investigated by using in vitro systems. ED-71 was metabolized to 1α,2β,25-trihydroxyvitamin D3 (1α,2β,25(OH)3D3) in human small intestine and liver microsomes. To identify the enzymes involved in this metabolism, we examined NADPH-dependent metabolism by recombinant P450 isoforms belonging to the CYP1, 2, and 3 families, and revealed that CYP3A4 had the activity. However, the CYP3A4 -specific inhibitor, ketoconazole, decreased the activity in human liver microsomes by only 36%, suggesting that other enzymes could be involved in ED-71 metabolism. Because metabolism was dramatically inhibited by cyanide, we assumed that sterol C4-methyl oxidase like gene product (SC4MOL) might contribute to the metabolism of ED-71. It is noted that SC4MOL is physiologically essential for cholesterol synthesis. Recombinant human SC4MOL expressed in COS7, Saccharomyces cerevisiae, or Escherichia coli cells converted ED-71 to 1α,2β,25(OH)3D3. Furthermore, we evaluated the metabolism of ED-71 by recombinant CYP24A1, which plays an important role in the metabolism of the active form of vitamin D3 (1α,25(OH)2D3) and its analogs. The k cat/K m value for 24- or 23-hydroxylation of ED-71 was only 3% of that for 1α,25(OH)2D3, indicating that ED-71 was resistant to CYP24A1-dependent catabolism. Among the three enzymes catalyzing ED-71, SC4MOL appears to be most important in the metabolism of ED-71. To the best of our knowledge, this is the first study showing that SC4MOL can function as a drug-metabolizing enzyme. The yeast and E. coli expression systems for SC4MOL could be useful for structure-function analyses of SC4MOL.
研究人员利用体外系统研究了活性维生素 D3 的 2β-羟丙氧基类似物 eldecalcitol(ED-71)的代谢情况。ED-71 在人小肠和肝微粒体中代谢为 1α,2β,25-三羟基维生素 D3(1α,2β,25(OH)3D3)。为了确定参与这种代谢的酶,我们研究了属于 CYP1、2 和 3 家族的重组 P450 同工酶的 NADPH 依赖性代谢,并发现 CYP3A4 具有这种活性。然而,CYP3A4 的特异性抑制剂酮康唑仅使肝微粒体中的活性降低了 36%,这表明其他酶也可能参与 ED-71 的代谢。由于氰化物显著抑制了代谢,我们假设固醇 C4-甲基氧化酶样基因产物(SC4MOL)可能有助于 ED-71 的代谢。值得注意的是,SC4MOL 是胆固醇合成的生理必需物质。在 COS7、酿酒酵母或大肠杆菌细胞中表达的重组人 SC4MOL 将 ED-71 转化为 1α,2β,25(OH)3D3。此外,我们评估了重组 CYP24A1 对 ED-71 代谢的作用,CYP24A1 在活性形式的维生素 D3(1α,25(OH)2D3)及其类似物的代谢中起着重要作用。ED-71 的 24-或 23-羟化的 k cat/K m 值仅为 1α,25(OH)2D3 的 3%,这表明 ED-71 对 CYP24A1 依赖性代谢具有抗性。在催化 ED-71 的三种酶中,SC4MOL 似乎在 ED-71 的代谢中最为重要。据我们所知,这是第一项表明 SC4MOL 可以作为药物代谢酶发挥作用的研究。用于 SC4MOL 的酵母和大肠杆菌表达系统可用于 SC4MOL 的结构功能分析。