化学
极表面积
连接器
生物物理学
溶剂
极地的
细胞通透性
细胞
组合化学
立体化学
生物化学
分子
有机化学
计算机科学
生物
操作系统
物理
天文
作者
Yordanos Esubalew Abeje,Lianne H. E. Wieske,Vasanthanathan Poongavanam,Stefanie Maassen,Yoseph Atilaw,Philipp M. Cromm,Lutz Lehmann,Máté Erdélyi,Daniel Meibom,Jan Kihlberg
标识
DOI:10.1021/acs.jmedchem.4c02492
摘要
The discovery of cell permeable and orally bioavailable von Hippel-Lindau (VHL) proteolysis targeting chimeras (PROTACs) is challenging as their structures locates them at, or beyond, the outer limits of oral druggable space. We have designed a set of nine VHL PROTACs and found that the linker had a profound impact on passive cell permeability. Determination of the solution ensembles in a nonpolar solvent revealed that high permeability was correlated to the ability of the PROTACs to adopt folded conformations that have a low solvent accessible 3D polar surface area. Our results suggest that the design of cell permeable VHL PROTACs could focus on linkers that facilitate shielding of polar surface area in the VHL ligand in a nonpolar but not in a polar environment. In addition, we found that not only intramolecular hydrogen bonds, but also NH–π and π–π interactions contribute to the stabilization of low-polarity conformations, and thereby to high cell permeability.
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