亲脂性
化学
磁导率
侧链
膜透性
李宾斯基五定律
氨基酸
膜
组合化学
分子动力学
立体化学
甲基化
生物物理学
生物化学
计算化学
有机化学
聚合物
生物
生物信息学
基因
作者
Marion L'Exact,Christian Comeau,Alix Bourhis,Olivier Boisvert,Ulrike Fröhlich,Danny Létourneau,Éric Marsault,Pierre Lavigne,Michel Grandbois,Pierre‐Luc T. Boudreault
标识
DOI:10.1016/j.bbamem.2023.184196
摘要
Compounds beyond the rule-of-five are generating interest as they expand the molecular toolbox for modulating targets previously considered “undruggable”. Macrocyclic peptides are an efficient class of molecules for modulating protein-protein interactions. However, predicting their permeability is difficult as they differ from small molecules. Although constrained by macrocyclization, they generally retain some conformational flexibility associated with an enhanced ability to cross biological membranes. In this study, we investigated the relationship between the structure of semi-peptidic macrocycles and their membrane permeability through structural modifications. Based on a scaffold of four amino acids and a linker, we synthesized 56 macrocycles incorporating modifications in either stereochemistry, N-methylation, or lipophilicity and assessed their passive permeability using the parallel artificial membrane permeability assay (PAMPA). Our results show that some semi-peptidic macrocycles have adequate passive permeability even with properties outside the Lipinski rule of five. We found that N-methylation in position 2 and the addition of lipophilic groups to the side chain of tyrosine led to an improvement in permeability with a decrease in tPSA and 3D-PSA. This enhancement could be attributed to the shielding effect of the lipophilic group on some regions of the macrocycle, which in turn, facilitates a favorable macrocycle conformation for permeability, suggesting some degree of chameleonic behavior.
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