硫醚
化学
肽
环肽
生物信息学
氨基酸
组合化学
细胞通透性
磁导率
限制
侧链
生物物理学
计算生物学
立体化学
生物化学
有机化学
膜
生物
基因
工程类
机械工程
聚合物
作者
Andrei A. Golosov,Alec N. Flyer,Jakal Amin,Charles R. Babu,Christian M. Gampe,Jingzhou Li,Eugene Liu,Katsumasa Nakajima,David O. Nettleton,Tajesh Patel,Patrick Reid,Lihua Yang,Lauren G. Monovich
标识
DOI:10.1021/acs.jmedchem.0c01505
摘要
Advances in the design of permeable peptides and in the synthesis of large arrays of macrocyclic peptides with diverse amino acids have evolved on parallel but independent tracks. Less precedent combines their respective attributes, thereby limiting the potential to identify permeable peptide ligands for key targets. Herein, we present novel 6-, 7-, and 8-mer cyclic peptides (MW 774–1076 g·mol–1) with passive permeability and oral exposure that feature the amino acids and thioether ring-closing common to large array formats, including DNA- and RNA-templated synthesis. Each oral peptide herein, selected from virtual libraries of partially N-methylated peptides using in silico methods, reflects the subset consistent with low energy conformations, low desolvation penalties, and passive permeability. We envision that, by retaining the backbone N-methylation pattern and consequent bias toward permeability, one can generate large peptide arrays with sufficient side chain diversity to identify permeability-biased ligands to a variety of protein targets.
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