| Literature DB >> 33377554 |
Jie Jian1, Roel Hammink2,3, Christine J McKenzie1, F Matthias Bickelhaupt4,5, Jordi Poater6,7, Jasmin Mecinović1.
Abstract
Aromatic rings form energetically favorable interactions with many polar groups in chemical and biological systems. Recent molecular studies have shown that sulfonamides can chelate metal ions and form hydrogen bonds, however, it is presently not established whether the polar sulfonamide functionality also interacts with aromatic rings. Here, synthetic, spectroscopic, structural, and quantum chemical analyses on 2,6-diarylbenzenesulfonamides are reported, in which two flanking aromatic rings are positioned close to the central sulfonamide moiety. Fine-tuning the aromatic character by substituents on the flanking rings leads to linear trends in acidity and proton affinity of sulfonamides. This physical-organic chemistry study demonstrates that aromatic rings have a capacity to stabilize sulfonamides via through-space NH-π interactions. These results have implications in rational drug design targeting electron-rich aromatic rings in proteins.Entities:
Keywords: aromatic compounds; molecular recognition; noncovalent interactions; polar-pi interactions; sulfonamides
Year: 2020 PMID: 33377554 DOI: 10.1002/chem.202004732
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236