September 22, 2026
Journal Article

Noncanonical folding of peptoid oligomers: Formation of a closed conformation in nonpolar solvent

Abstract

Peptoids provide a versatile platform for foldamer design, yet their conformational behavior in low-dielectric media remains poorly understood. The structural characteristics of N-1-phenylethylglycine (Nspe) homo-oligomers were inves-tigated in chloroform, a solvent that mimics the interior of lipid bilayers, using nuclear magnetic resonance (NMR) spec-troscopy and molecular dynamics (MD) simulations. Nspe7 populated two distinct compact conformations, while Nspe10 adopted a single homogeneous conformation related to the previously reported Nspe9 threaded-loop structure. Integrated experimental and computational analysis reveals that these structures are stabilized by cooperative end-to-end intramo-lecular hydrogen bonding, cis-trans backbone isomerism, and hydrophobic side-chain shielding. The resulting structures minimize exposed polar surface area, demonstrating a closed conformation in the low-dielectric environment. These find-ings establish specific chain-length requirements for achieving well-defined closed conformations. This work provides insights into peptoid folding in nonpolar media, enabling rational design strategies for solvent-directed conformational switching systems.

Published: September 22, 2026

Citation

Oh J., M.J. Yang, X. Chen, J. Shin, B.S. Harris, R.M. Raddi, and S. Park, et al. 2026. Noncanonical folding of peptoid oligomers: Formation of a closed conformation in nonpolar solvent. Organic Letters 28, no. 26:8375–8381. PNNL-SA-219732. doi:10.1021/acs.orglett.6c02040

Research topics