Unique folded structures of natural and synthetic oligomers are the most fundamental basis for their unique functions. N-substituted β-peptides, or β-peptoids, are synthetic oligomers of great potential to fold into… Click to show full abstract
Unique folded structures of natural and synthetic oligomers are the most fundamental basis for their unique functions. N-substituted β-peptides, or β-peptoids, are synthetic oligomers of great potential to fold into diverse three-dimensional structures because of the existence of four rotatable bonds in a monomer and its highly modular synthetic accessibility. However, the existence of the four rotatable bonds poses a challenge for conformational control of β-peptoids. Here, we report a strategy for per-residue programming of two dihedral angles of β-peptoids, which is useful for restricting conformational space of the oligomers. The oligomer was found to form a unique loop conformation that is stabilized by the backbone rotational restrictions. Circular dichroism and NMR spectroscopic analyses and X-ray crystallographic analysis of the oligomer are presented. The strategy would significantly facilitate the discovery of many more unique folded structures of β-peptoids.
               
Click one of the above tabs to view related content.