Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
Department of Chemistry and Biochemistry, University of California, Santa Cruz, CA, 95064, USA.
Nat Commun. 2023 Mar 17;14(1):1416. doi: 10.1038/s41467-023-36978-z.
Naturally occurring peptides with high membrane permeability often have ester bonds on their backbones. However, the impact of amide-to-ester substitutions on the membrane permeability of peptides has not been directly evaluated. Here we report the effect of amide-to-ester substitutions on the membrane permeability and conformational ensemble of cyclic peptides related to membrane permeation. Amide-to-ester substitutions are shown to improve the membrane permeability of dipeptides and a model cyclic hexapeptide. NMR-based conformational analysis and enhanced sampling molecular dynamics simulations suggest that the conformational transition of the cyclic hexapeptide upon membrane permeation is differently influenced by an amide-to-ester substitution and an amide N-methylation. The effect of amide-to-ester substitution on membrane permeability of other cyclic hexapeptides, cyclic octapeptides, and a cyclic nonapeptide is also investigated to examine the scope of the substitution. Appropriate utilization of amide-to-ester substitution based on our results will facilitate the development of membrane-permeable peptides.
具有高膜透过性的天然存在的肽通常在其主链上具有酯键。然而,酰胺-酯取代对肽的膜透过性的影响尚未直接评估。在这里,我们报告了酰胺-酯取代对与膜渗透相关的环状肽的膜透过性和构象整体的影响。酰胺-酯取代被证明可以提高二肽和模型环状六肽的膜透过性。基于 NMR 的构象分析和增强采样分子动力学模拟表明,酰胺-酯取代和酰胺 N-甲基化对环状六肽在膜透过过程中的构象转变有不同的影响。还研究了酰胺-酯取代对其他环状六肽、环状八肽和环状九肽的膜透过性的影响,以检验取代的范围。基于我们的结果,适当利用酰胺-酯取代将有助于开发具有膜透过性的肽。