Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Center for Biophysics and Quantitative Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Biomolecules. 2022 Jun 20;12(6):853. doi: 10.3390/biom12060853.
Human cytochrome P450 CYP3A4 is involved in the processing of more than 35% of current pharmaceuticals and therefore is responsible for multiple drug-drug interactions (DDI). In order to develop a method for the detection and prediction of the possible involvement of new drug candidates in CYP3A4-mediated DDI, we evaluated the application of midazolam (MDZ) as a probe substrate. MDZ is hydroxylated by CYP3A4 in two positions: 1-hydroxy MDZ formed at lower substrate concentrations, and up to 35% of 4-hydroxy MDZ at high concentrations. The ratio of the formation rates of these two products (the site of metabolism ratio, SOM) was used as a measure of allosteric heterotropic interactions caused by effector molecules using CYP3A4 incorporated in lipid nanodiscs. The extent of the changes in the SOM in the presence of effectors is determined by chemical structure and is concentration-dependent. MD simulations of CYP3A4 in the lipid bilayer suggest that experimental results can be explained by the movement of the F-F' loop and concomitant changes in the shape and volume of the substrate-binding pocket. As a result of PGS binding at the allosteric site, several residues directly contacting MDZ move away from the substrate molecule, enabling the repositioning of the latter for minor product formation.
人细胞色素 P450 CYP3A4 参与处理超过 35%的当前药物,因此负责多种药物-药物相互作用 (DDI)。为了开发一种用于检测和预测新候选药物是否可能参与 CYP3A4 介导的 DDI 的方法,我们评估了咪达唑仑 (MDZ) 作为探针底物的应用。MDZ 可被 CYP3A4 在两个位置羟基化:在较低底物浓度下形成 1-羟基 MDZ,在高浓度下形成高达 35%的 4-羟基 MDZ。这两种产物的形成速率之比(代谢部位比,SOM)被用作衡量效应分子引起的变构异质相互作用的指标,使用包含在脂质纳米盘中的 CYP3A4。在效应物存在下 SOM 变化的程度由化学结构决定,且与浓度有关。脂质双层中的 CYP3A4 的 MD 模拟表明,实验结果可以通过 F-F'环的运动以及底物结合口袋的形状和体积的相应变化来解释。由于 PGS 在变构部位的结合,几个直接与 MDZ 接触的残基从底物分子上移开,使后者重新定位以形成次要产物。