| Literature DB >> 25965104 |
Minna Kortelainen1, Aku Suhonen1, Andrea Hamza2, Imre Pápai3, Elisa Nauha1, Sanna Yliniemelä-Sipari1, Maija Nissinen4, Petri M Pihko5.
Abstract
A series of small, unsymmetrical pyridine-2,6-dicarboxylamide oligoamide foldamers with varying lengths and substituents at the end groups were synthetized to study their conformational properties and folding patterns. The @-type folding pattern resembled the oxyanion-hole motifs of enzymes, but several alternative folding patterns could also be characterized. Computational studies revealed several alternative conformers of nearly equal stability. These folding patterns differed from each other in their intramolecular hydrogen-bonding patterns and aryl-aryl interactions. In the solid state, the foldamers adopted either the globular @-type fold or the more extended S-type conformers, which were very similar to those foldamers obtained computationally. In some cases, the same foldamer molecule could even crystallize into two different folding patterns, thus confirming that the different folding patterns are very close in energy in spite of their completely different shapes. Finally, the best match for the observed NOE interactions in the liquid state was a conformation that matched the computationally characterized helix-type fold.Entities:
Keywords: crystal growth; foldamers; hydrogen bonds; oligomerization; protein folding
Year: 2015 PMID: 25965104 DOI: 10.1002/chem.201406521
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236