Amide-to-ester substitution as a stable alternative to N-methylation for increasing membrane permeability in cyclic peptides

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作者
Yuki Hosono
Satoshi Uchida
Moe Shinkai
Chad E. Townsend
Colin N. Kelly
Matthew R. Naylor
Hsiau-Wei Lee
Kayoko Kanamitsu
Mayumi Ishii
Ryosuke Ueki
Takumi Ueda
Koh Takeuchi
Masatake Sugita
Yutaka Akiyama
Scott R. Lokey
Jumpei Morimoto
Shinsuke Sando
机构
[1] The University of Tokyo,Department of Chemistry and Biotechnology, Graduate School of Engineering
[2] University of California,Department of Chemistry and Biochemistry
[3] The University of Tokyo,Graduate School of Pharmaceutical Sciences
[4] Tokyo Institute of Technology,Department of Computer Science, School of Computing
[5] Tokyo Institute of Technology,Middle
[6] The University of Tokyo,Molecule IT
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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.
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