| Literature DB >> 25815150 |
Kentaro Takayama1, Kenji Mori2, Yuko Sohma1, Koji Taketa1, Akihiro Taguchi1, Fumika Yakushiji1, Naoto Minamino2, Mikiya Miyazato2, Kenji Kangawa2, Yoshio Hayashi1.
Abstract
Neuromedin U (NMU) and S (NMS) display various physiological activities, including an anorexigenic effect, and share a common C-terminal heptapeptide-amide sequence that is necessary to activate two NMU receptors (NMUR1 and NMUR2). On the basis of this knowledge, we recently developed hexapeptide agonists 2 and 3, which are highly selective to human NMUR1 and NMUR2, respectively. However, the agonists are still less potent than the endogenous ligand, hNMU. Therefore, we performed an additional structure-activity relationship study, which led to the identification of the more potent hexapeptide 5d that exhibits similar NMUR1-agonistic activity as compared to hNMU. Additionally, we studied the stability of synthesized agonists, including 5d, in rat serum, and identified two major biodegradation sites: Phe(2)-Arg(3) and Arg(5)-Asn(6). The latter was more predominantly cleaved than the former. Moreover, substitution with 4-fluorophenylalanine, as in 5d, enhanced the metabolic stability at Phe(2)-Arg(3). These results provide important information to guide the development of practical hNMU agonists.Entities:
Keywords: Agonist; biodegradation site; neuromedin U; neuromedin U receptor; peptide
Year: 2015 PMID: 25815150 PMCID: PMC4360155 DOI: 10.1021/ml500494j
Source DB: PubMed Journal: ACS Med Chem Lett ISSN: 1948-5875 Impact factor: 4.345