Τόμος 9 (1995) – Τεύχος 2 & 3 – Άρθρο 1 – Επιθεώρηση Κλινικής Φαρμακολογίας και Φαρμακοκινητικής-Διεθνής Έκδοση – Volume 9 (1995) – Issue 2 & 3 – Article 1 – Epitheorese Klinikes Farmakologias και Farmakokinetikes-International Edition

 

Title Designing peptide mimetics
Author Graham J. Moore1 and John M. Matsoukas2

1.       Department of Pharmacology and Therapeutics, The University of Calgary, Faculty of Medicine, 3330 Hospital Drive N. W Alberta T2N 4NI Canada

2.      Department of Chemistry, University of Patras, 261 00 Patras, Greece

Citation Moore, G.J., Matsoukas J.M.: Designing peptide mimetics, Epitheorese Klin. Farmakol. Farmakokinet. 9(2-3): 53-58 (1995)
Publication Date 1995
Full Text Language English
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Keywords 2D-NMR spectroscopy, conformational analysis, molecular modelling, peptidomimetic analogs
Other Terms review article
Summary Two dimensional Nuclear Magnetic Resonance techniques, such as Correlated Spectroscopy (COSY), Nuclear Overhauser Effect Spectroscopy in the Rotating Frame (ROESY) and one dimensional Nuclear Overhauser Effect Enhancement Spectroscopy (1D-NOE), have proved to be very useful techniques for identifying the conformational features of peptide hormones. Application of these techniques in receptor simulating environments has enabled us to investigate the conformational properties of peptide hormones such as Angiotensin II (ANGII), Gonadotropin-Releasing Hormone (GnRH) and Thrombin Receptor Peptides (TRP). ANGII is implicated in cardiovascular diseases, GnRH regulates production of sex steroids and TRP peptides are known as coagulation factors and cell function regulators. Therefore, conformational analysis of these peptides is very useful and has led to molecular models which are refined using conformational search methods and energy minimization calculations. Models are also useful for designing peptide
References 1.       Kessler, H.: Angew. Chem. (Int. Ed.) 32: 543-544 (1993)

2.      McCormic, D.: Biotechnology 10: 131 (1992)

3.      Smeby, R.R., Fermandjian, S. In: Chemistry Biochemistry of Amino Acids, Peptides Proteins (Weinstein, B., ed.)t Vol. 5, pp. 117-148, Dekker, New York

4.      Moore, GJ. In: Comprehensive Medicinal Chemistry (Emmett, J.C., ed.), Vol. 3, pp. 961-980, Pergamon Press, 1990

5.      Matsoukas, J.M., Bigam, G., Zhou, N., Moore, G.J.: Peptides 11: 359-366 (1990)

6.      Turner, R.J., Matsoukas, J.M., Moore, G.J.: Biochim. Biophys. Acta 106S: 21-28 (1991)

7.       Rauk, A. Hamilton, G. and Moore, G.J. Biochim. Biophys. Res. Commun. 145: 1349-1353 (1987)

8.      Carini, D.J. et al.: J. Med. Chem. 34: 2525-2547 (1991)

9.      Wong, P.C. et al.: J. Pharmacol. Exp. Then. 34: 211- 217 (1990)

10.    Moore, G.J., Franklin, K.J., Nystrom, D.M., Goghari, M.H.: Can. J. Physiol. Pharmacol. 63: 966-975 (1985)

11.     Rees, D.C.: Annual Reports Med. Chem. 28: 59-68 (1993)

 

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