Ester vs. amide on folding: a case study with a 2-residue synthetic peptide
Title | Ester vs. amide on folding: a case study with a 2-residue synthetic peptide |
Publication Type | Journal Article |
Year of Publication | 2013 |
Authors | Vijayadas, KN, Nair, RV, Gawade, RL, Kotmale, AS, Prabhakaran, P, Gonnade, RG, Puranik, VG, Rajamohanan, PR, Sanjayan, GJ |
Journal | Organic & Biomolecular Chemistry |
Volume | 11 |
Issue | 48 |
Pagination | 8348-8356 |
Date Published | DEC |
ISSN | 1477-0520 |
Abstract | Although known for their inferiority as hydrogen-bonding acceptors when compared to amides, esters are often found at the C-terminus of peptides and synthetic oligomers (foldamers), presumably due to the synthetic readiness with which they are obtained using protected peptide coupling, deploying amino acid esters at the C-terminus. When the H-bonding interactions deviate from regularity at the termini, peptide chains tend to ``fray apart''. However, the individual contributions of C-terminal esters in causing peptide chain end-fraying goes often unnoticed, particularly due to diverse competing effects emanating from large peptide chains. Herein, we describe a striking case of a comparison of the individual contributions of C-terminal ester vs. amide carbonyl as a H-bonding acceptor in the folding of a peptide. A simple two-residue peptide fold has been used as a testing case to demonstrate that amide carbonyl is far superior to ester carbonyl in promoting peptide folding, alienating end-fraying. This finding would have a bearing on the fundamental understanding of the individual contributions of stabilizing/destabilizing non-covalent interactions in peptide folding. |
DOI | 10.1039/c3ob41967c |
Type of Journal (Indian or Foreign) | Foreign |
Impact Factor (IF) | 3.487 |