том 34 издание 10 страницы 3125-3132

Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity

P. Schiller 1
1
 
Laboratory of Chemical Biology and Peptide Research, Clinical Research Institute of Montreal, Quebec, Canada.
Тип публикацииJournal Article
Дата публикации1991-10-01
scimago Q1
wos Q1
БС1
SJR1.801
CiteScore11.5
Impact factor6.8
ISSN00222623, 15204804
Drug Discovery
Molecular Medicine
Краткое описание
In an effort to determine the effect of side chain conformational restriction on opioid receptor selectivity, the cyclic phenylalanine analogues 2-aminoindan-2-carboxylic acid (Aic), 2-aminotetralin-2-carboxylic acid (Atc), and tetrahydroisoquinoline-3-carboxylic acid (Tic) were substituted for Phe in the potent cyclic opioid peptide analogue H-Tyr-D-Orn-Phe-Glu-NH2, which lacks significant opioid receptor selectivity. Compounds were tested in mu- and delta-opioid receptor representative binding assays and bioassays in vitro. The analogue H-Tyr-D-Orn-Aic-Glu-NH2 was found to be a potent agonist with high preference of mu receptors over delta receptors. Opening of the five-membered ring of Aic in the latter peptide, as achieved through substitution of C alpha-methylphenylalanine or o-methylphenylalanine, resulted in only slightly selective compounds, indicating that the high mu selectivity of the Aic analogue is exclusively the consequence of the imposed side chain conformational restriction. Both diastereoisomers of H-Tyr-D-Orn-(D,L)-Atc-Glu-NH2 were highly mu-selective and, in contrast to the weak affinity observed with the D-Phe3 analogue as compared to the L-Phe3 analogue, both had similar potency. Thus, stereospecificity was lost as a consequence of side chain conformational restriction. Further structure-activity data obtained with analogues containing L- or D-homophenylalanine (Hfe) or 3-(1'-naphthyl)alanine (Nap) in place of Phe3 and consideration of geometric interrelationships between Nap and the L and D isomers of Atc, Hfe, and Phe led to the proposal that the D-Phe3 and the D-Atc3 analogue may have different modes of binding to the receptor. The very low potency observed with H-Tyr-D-Orn-N alpha MePhe-Glu-NH2 (N alpha MePhe = N alpha-methylphenylalanine) and H-Tyr-D-Orn-Tic-Glu-NH2 indicated that N alpha-alkylation at the 3-position is detrimental to activity.
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ГОСТ |
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Schiller P. et al. Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity // Journal of Medicinal Chemistry. 1991. Vol. 34. No. 10. pp. 3125-3132.
ГОСТ со всеми авторами (до 50) Скопировать
Schiller P. Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity // Journal of Medicinal Chemistry. 1991. Vol. 34. No. 10. pp. 3125-3132.
RIS |
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TY - JOUR
DO - 10.1021/jm00114a023
UR - https://doi.org/10.1021/jm00114a023
TI - Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity
T2 - Journal of Medicinal Chemistry
AU - Schiller, P.
PY - 1991
DA - 1991/10/01
PB - American Chemical Society (ACS)
SP - 3125-3132
IS - 10
VL - 34
PMID - 1656045
SN - 0022-2623
SN - 1520-4804
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{1991_Schiller,
author = {P. Schiller},
title = {Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity},
journal = {Journal of Medicinal Chemistry},
year = {1991},
volume = {34},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/jm00114a023},
number = {10},
pages = {3125--3132},
doi = {10.1021/jm00114a023}
}
MLA
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Schiller, P., et al. “Conformational restriction of the phenylalanine residue in a cyclic opioid peptide analog: effects on receptor selectivity and stereospecificity.” Journal of Medicinal Chemistry, vol. 34, no. 10, Oct. 1991, pp. 3125-3132. https://doi.org/10.1021/jm00114a023.