From the Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo, Buffalo, New York 14214
J Biol Chem. 2018 Mar 16;293(11):4167-4179. doi: 10.1074/jbc.RA117.001145. Epub 2018 Jan 25.
Mitochondrial cytochromes P450 (P450s) are responsible for important metabolic reactions, including steps involved in steroid and vitamin D metabolism. The mitochondrial P450 24A1 (CYP24A1) is responsible for deactivation of the bioactive form of vitamin D, 1,25(OH)D3. Its function relies on formation of a P450-redox partner complex with the ferredoxin and electron donor adrenodoxin (Adx). However, very little is known about how the Adx-CYP24A1 complex forms. In this study, we report the results of solution NMR in which we monitor isotopically labeled full-length Adx as it binds CYP24A1 in complex with the P450 inhibitor clotrimazole. The NMR titration data suggested a mode for P450-Adx interactions in which formation of the complex relies on contributions from multiple recognition sites on the Adx core domain, some of which have not previously been reported. To evaluate differences among CYP24A1-Adx complexes from different mammalian species and displaying distinct regioselectivity for 1,25(OH)D3, all bound spectra were acquired in parallel for human (carbon-23 and -24 hydroxylase), rat (carbon-24 hydroxylase), and opossum (carbon-23 hydroxylase) CYP24A1 isoforms. Binding data from a series of single and double charge-neutralizing substitutions of Adx confirmed that species-specific CYP24A1 isoforms differ in binding to Adx, providing evidence that variations in redox partner interactions correlate with P450 regioselectivity. In summary, these findings reveal that CYP24A1-Adx interactions rely on several recognition sites and that variations in CYP24A1 isoforms modulate formation of the complex, thus providing insight into the variable and complex nature of mitochondrial P450-Adx interactions.
线粒体细胞色素 P450(P450s)负责重要的代谢反应,包括类固醇和维生素 D 代谢中的步骤。线粒体 P450 24A1(CYP24A1)负责使生物活性形式的维生素 D,1,25(OH)D3 失活。其功能依赖于与铁氧还蛋白和电子供体肾上腺皮质酮(Adx)形成 P450-氧化还原伴侣复合物。然而,关于 Adx-CYP24A1 复合物的形成方式,我们知之甚少。在这项研究中,我们报告了溶液 NMR 的结果,在该实验中,我们监测了标记有同位素的全长 Adx 与与 P450 抑制剂克霉唑形成复合物的 CYP24A1 的情况。NMR 滴定数据表明了 P450-Adx 相互作用的一种模式,其中复合物的形成依赖于 Adx 核心结构域上多个识别位点的贡献,其中一些以前尚未报道过。为了评估来自不同哺乳动物物种的 CYP24A1-Adx 复合物之间的差异,并对 1,25(OH)D3 表现出不同的区域选择性,我们平行获取了人(碳-23 和 -24 羟化酶)、大鼠(碳-24 羟化酶)和负鼠(碳-23 羟化酶)CYP24A1 同工型的所有结合谱。Adx 的一系列单和双电荷中和取代的结合数据证实,物种特异性 CYP24A1 同工型在与 Adx 的结合上存在差异,这提供了证据表明氧化还原伴侣相互作用的变化与 P450 区域选择性相关。总之,这些发现表明 CYP24A1-Adx 相互作用依赖于几个识别位点,并且 CYP24A1 同工型的变化调节复合物的形成,从而深入了解线粒体 P450-Adx 相互作用的可变性和复杂性。