化学
立体化学
肽
膜透性
亲环素
组合化学
膜
环肽
分子内力
生物物理学
氢键
分子
生物化学
有机化学
生物
基因
作者
Dongjae Lee,Sung‐Jin Lee,Jieun Choi,Jieun Choi,Yoo-Kyung Song,Min Ju Kim,Dae‐Seop Shin,Myung Ae Bae,Yong‐Chul Kim,Chin‐Ju Park,Kyeong‐Ryoon Lee,Jun‐Ho Choi,Jun‐Ho Choi,Jiwon Seo
标识
DOI:10.1021/acs.jmedchem.1c00211
摘要
A macrocyclic peptide scaffold with well-established structure–property relationship is desirable for tackling undruggable targets. Here, we adopted a natural macrocycle, cyclosporin O (CsO) and its derivatives (CP1–3), and evaluated the impact of conformation on membrane permeability, cyclophilin A (CypA) binding, and the pharmacokinetic (PK) profile. In nonpolar media, CsO showed a similar conformation to cyclosporin A (CsA), a well-known chameleonic macrocycle, but less chameleonic behavior in a polar environment. The weak chameleonicity of CsO resulted in decreased membrane permeability; however, the more rigid conformation of CsO was not detrimental to its PK profile. CsO exhibited a higher plasma concentration than CsA, which resulted from minimal CypA binding and lower accumulation in red blood cells and moderate oral bioavailability (F = 12%). Our study aids understanding of CsO, a macrocyclic peptide that is less explored than CsA but with greater potential for diversity generation and rational design.
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