Structural optimization and characterization of potent analgesic macrocyclic analogues of neurotensin (8–13)
M Sousbie, M Vivancos, RL Brouillette… - Journal of Medicinal …, 2018 - ACS Publications
Journal of Medicinal Chemistry, 2018•ACS Publications
The neurotensin receptors are attractive targets for the development of new analgesic
compounds. They represent potential alternatives or adjuvants to opioids. Herein, we report
the structural optimization of our recently reported macrocyclic peptide analogues of NT (8–
13). The macrocycle was formed via ring-closing metathesis (RCM) between an ortho
allylated tyrosine residue in position 11 and the side chain of alkene-functionalized amino
acid in position 8 of NT (8–13). Minute modifications led to significant binding affinity …
compounds. They represent potential alternatives or adjuvants to opioids. Herein, we report
the structural optimization of our recently reported macrocyclic peptide analogues of NT (8–
13). The macrocycle was formed via ring-closing metathesis (RCM) between an ortho
allylated tyrosine residue in position 11 and the side chain of alkene-functionalized amino
acid in position 8 of NT (8–13). Minute modifications led to significant binding affinity …
The neurotensin receptors are attractive targets for the development of new analgesic compounds. They represent potential alternatives or adjuvants to opioids. Herein, we report the structural optimization of our recently reported macrocyclic peptide analogues of NT(8–13). The macrocycle was formed via ring-closing metathesis (RCM) between an ortho allylated tyrosine residue in position 11 and the side chain of alkene-functionalized amino acid in position 8 of NT(8–13). Minute modifications led to significant binding affinity improvement (Ki improved from 5600 to 15 nM) with greatly improved plasma stability compared to NT(8–13). This study also delineates the structural features influencing these parameters. The signaling profiles of the new macrocycles were determined on the NTS1 receptor, and the physiological effects of the two most potent and stable analogues were assessed in vivo using rodent models. Both compounds displayed strong analgesic effects.
ACS Publications
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