4.7 Article

Cyclic side-chain-linked opioid analogs utilizing cis- and trans-4-aminocyclohexyl-D-alanine

期刊

BIOORGANIC & MEDICINAL CHEMISTRY
卷 22, 期 23, 页码 6545-6551

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2014.10.022

关键词

Unnatural amino acids; Opioid peptides; Cyclic analogs; Opioid receptor binding; Conformational analysis; Molecular docking

资金

  1. Medical University of Lodz [503/1-156-02/503-01, 502-14-139]

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Cyclization of linear sequences is a well recognized tool in opioid peptide chemistry for generating analogs with improved bioactivities. Cyclization can be achieved through various bridging bonds between peptide ends or side-chains. In our earlier paper we have reported the synthesis and biological activity of a cyclic peptide, Tyr-c[D-Lys-Phe-Phe-Asp]NH2 (1), which can be viewed as an analog of endomorphin-2 (EM-2, Tyr-Pro-Phe-Phe-NH2). Cyclization was achieved through an amide bond between side-chains of D-Lys and Asp residues. Here, to increase rigidity of the cyclic structure, we replaced D-Lys with cis- or trans-4-aminocyclohexyl-D-alanine (D-ACAla). Two sets of analogs incorporating either Tyr or Dmt (2',6'-dimethyltyrosine) residues in position 1 were synthesized. In the binding studies the analog incorporating Dmt and trans-D-ACAla showed high affinity for both, mu- and delta-opioid receptors (MOR and DOR, respectively) and moderate affinity for the kappa-opioid receptor (KOR), while analog with Dmt and cis-D-ACAla was exceptionally MOR-selective. Conformational analyses by NMR and molecular docking studies have been performed to investigate the molecular structural features responsible for the noteworthy MOR selectivity. (C) 2014 Elsevier Ltd. All rights reserved.

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