Garcia Jimenez Diego, Ermondi Giuseppe, Jandova Zuzana, Vallaro Maura, Caron Giulia, Arnhof Heribert
Molecular Biotechnology and Health Sciences Dept., Università di Torino, Piazza Nizza 44bis, Torino 10126, Italy.
Boehringer Ingelheim RCV GmbH Co KG, Dr. Boehringer-Gasse 5-11, Vienna 1121, Austria.
J Med Chem. 2025 Aug 14;68(15):16666-16677. doi: 10.1021/acs.jmedchem.5c01497. Epub 2025 Jul 31.
In this study, we profiled 11 structurally related von Hippel-Lindau (VHL)-based proteolysis-targeting chimeras (PROTACs), evaluating pharmacokinetics in mice (oral bioavailability and clearance), ADME properties (solubility, permeability, and efflux ratio), and key physicochemical traits (polarity, lipophilicity, and chameleonicity). While Caco-2 permeability did not correlate with oral bioavailability (F%), the efflux ratio (ER) proved a strong predictor. The ER could also be estimated using the chromatographic descriptor log k'80 PLRP-S. Conformational sampling and molecular dynamics in polar and nonpolar environments showed that linker methylation drives chameleonic folding, influencing ER and, in turn, F%. Overall, our results show that the oral bioavailability of VHL-based PROTACs with different linker methylation levels can be predicted throughout drug discovery. However, this requires specialized tools tailored to the challenges of PROTAC chemical space. Further work is needed to develop a robust, standardized, and automated predictive workflow.
在本研究中,我们对11种结构相关的基于希佩尔-林道(VHL)的蛋白水解靶向嵌合体(PROTAC)进行了分析,评估了其在小鼠体内的药代动力学(口服生物利用度和清除率)、药物代谢动力学性质(溶解度、渗透性和外排率)以及关键的物理化学特性(极性、亲脂性和变色龙特性)。虽然Caco-2细胞渗透性与口服生物利用度(F%)无相关性,但外排率(ER)被证明是一个强有力的预测指标。ER也可以使用色谱描述符log k'80 PLRP-S进行估算。在极性和非极性环境中的构象采样和分子动力学表明,连接子甲基化驱动变色龙式折叠,影响ER,进而影响F%。总体而言,我们的结果表明,在整个药物研发过程中,可以预测不同连接子甲基化水平的基于VHL的PROTAC的口服生物利用度。然而这需要针对PROTAC化学空间挑战量身定制的专门工具。还需要进一步开展工作来开发一个强大、标准化且自动化的预测工作流程。