| Literature DB >> 28000361 |
Akira Mizuno1, Tomoshi Kameda2, Tomoki Kuwahara1, Hideyuki Endoh1, Yoshihiko Ito3, Shizuo Yamada3, Kimiko Hasegawa4, Akihito Yamano4, Mizuki Watanabe1, Mitsuhiro Arisawa1, Satoshi Shuto1,5.
Abstract
Detailed conformational analyses of our previously reported cyclopropane-based peptidomimetics and conformational analysis-driven ligand optimization are described. Computational calculations and X-ray crystallography showed that the characteristic features of cyclopropane function effectively to constrain the molecular conformation in a three-dimensionally diverse manner. Subsequent principal component analysis revealed that the diversity covers the broad chemical space filled by peptide secondary structures in terms of both main-chain and side-chain conformations. Based on these analyses, a lead stereoisomer targeting melanocortin receptors was identified, and its potency and subtype selectivity were improved by further derivatization. The presented strategy is effective not only for designing non-peptidic ligands from a peptide ligand but also for the rational optimization of these ligands based on the plausible target-binding conformation without requiring the three- dimensional structural information of the target and its peptide ligands.Entities:
Keywords: chemical space; conformation analysis; drug design; peptidomimetics; three-dimensional structural diversity
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Year: 2017 PMID: 28000361 DOI: 10.1002/chem.201605312
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236