Home LiteratureArticle Details
PMID: 12595949 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Beta(2)/beta(3)-di- and alpha/beta(3)-tetrapeptide derivatives as potent agonists at somatostatin sst(4) receptors.

Naunyn-Schmiedeberg's archives of pharmacology ·Vol. 367 ·No. 2 ·2003-02-00 ·Pages 95-103

Nunn C, Rueping M, Langenegger D, Schuepbach E, Kimmerlin T, Micuch P, Hurth K, Seebach D, Hoyer D

Abstract

Four linear beta(2)/beta(3)-di- and alpha/beta(3)-tetrapeptides (1-4) were investigated as somatostatin sst(4) receptor agonists on recombinant human and mouse somatostatin receptors. Human somatostatin receptor subtypes 1-5 (sst(1-5)), and mouse somatostatin receptor subtypes 1,3,4 and 5, were characterised using the agonist radioligands [(125)I]LTT-SRIF-28, [(125)I][Tyr(10)]CST(14) and [(125)I]CGP 23996 in stably transfected Chinese hamster lung fibroblast (CCL39) cells. The peptides bound selectively to sst(4) receptors with nanomolar affinity (pK(d)=5.4-7.8). The peptides were investigated on second messenger systems both as agonists, and as antagonists to SRIF-14-mediated effects in CCL39 cells expressing mouse sst(4 )receptors, via measurement of inhibition of forskolin-stimulated adenylate cyclase activity, and stimulation of luciferase expression. The peptides showed full agonism or pronounced partial agonism (40 to 100% relative intrinsic activity) in both inhibition of forskolin-stimulated adenylate cyclase activity (pEC(50)=5.5-6.8), and luciferase expression (pEC(50)=5.5-6.5). The agonist potential was confirmed since antagonism was very difficult to establish. The data show that beta(2)/beta(3)-di- and alpha/beta(3)-tetrapeptide derivatives have agonist potential at recombinant somatostatin sst(4) receptors. Therefore, they may be used to elucidate physiological and biochemical effects mediated by sst(4), and may also have potential as therapeutic agents.

MeSH Terms
Adenylyl Cyclases/metabolism Animals Cells, Cultured Colforsin/pharmacology Cricetinae Cricetulus Dipeptides/chemical synthesis,pharmacology Enzyme Inhibitors/chemical synthesis,pharmacology Fibroblasts/drug effects,metabolism Humans Ligands Luciferases/biosynthesis Lung/cytology Membrane Proteins Mice Oligopeptides/chemical synthesis,pharmacology Radioligand Assay Receptors, Somatostatin/agonists,metabolism Structure-Activity Relationship
Chemicals
Dipeptides Enzyme Inhibitors Ligands Membrane Proteins Oligopeptides Receptors, Somatostatin somatostatin receptor subtype-4 Colforsin Luciferases Adenylyl Cyclases
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Nunn Caroline
Nervous System Research, WSJ 386/745, Novartis Pharma AG, 4002, Basel, Switzerland.
Rueping Magnus
Langenegger Daniel
Schuepbach Edi
Kimmerlin Thierry
Micuch Peter
Hurth Konstanze
Seebach Dieter
Hoyer Daniel
References (30)
30 references, click to expand
  1. On the antimicrobial and hemolytic activities of amphiphilic beta-peptides.
    Chembiochem. 2001 Oct 1;2(10):771-3 PMID: 11948860
  2. Two types of somatostatin receptors differentiated by cyclic somatostatin analogs.
    Science. 1985 Apr 26;228(4698):492-5 PMID: 2858917
  3. Analogues of somatostatin bind selectively to brain somatostatin receptor subtypes.
    J Neurochem. 1992 Oct;59(4):1241-50 PMID: 1357093
  4. Nipecotic and iso-nipecotic amides as potent and selective somatostatin subtype-2 receptor agonists.
    Bioorg Med Chem Lett. 2001 Feb 12;11(3):415-7 PMID: 11212124
  5. Classification and nomenclature of somatostatin receptors.
    Trends Pharmacol Sci. 1995 Mar;16(3):86-8 PMID: 7792934
  6. Molecular cloning and functional characterization of a rat somatostatin sst2(b) receptor splice variant.
    Br J Pharmacol. 1998 Sep;125(1):209-17 PMID: 9776362
  7. Synthesis and biological activities of potent peptidomimetics selective for somatostatin receptor subtype 2.
    Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10836-41 PMID: 9724791
  8. The outstanding biological stability of beta- and gamma-peptides toward proteolytic enzymes: an in vitro investigation with fifteen peptidases.
    Chembiochem. 2001 Jun 1;2(6):445-55 PMID: 11828476
  9. Analogs of somatostatin selectively label distinct subtypes of somatostatin receptors in rat brain.
    J Pharmacol Exp Ther. 1989 Nov;251(2):510-7 PMID: 2572690
  10. The neurobiology of somatostatin.
    Crit Rev Neurobiol. 1994;8(1-2):25-44 PMID: 7907281
  11. Peptide folding induces high and selective affinity of a linear and small beta-peptide to the human somatostatin receptor 4.
    J Med Chem. 2001 Jul 19;44(15):2460-8 PMID: 11448228
  12. Translocation of a beta-peptide across cell membranes.
    J Am Chem Soc. 2002 Jan 23;124(3):368-9 PMID: 11792194
  13. Rapid identification of subtype-selective agonists of the somatostatin receptor through combinatorial chemistry.
    Science. 1998 Oct 23;282(5389):737-40 PMID: 9784130
  14. Molecular pharmacology of somatostatin receptors.
    Naunyn Schmiedebergs Arch Pharmacol. 1994 Nov;350(5):441-53 PMID: 7870182
  15. Identification and characterization of subtype selective somatostatin receptor agonists.
    J Physiol Paris. 2000 May-Aug;94(3-4):211-5 PMID: 11087999
  16. Drug design at peptide receptors: somatostatin receptor ligands.
    J Mol Neurosci. 2002 Feb-Apr;18(1-2):15-27 PMID: 11931345
  17. Cloning and expression of a novel mouse somatostatin receptor (SSTR2B).
    FEBS Lett. 1992 Oct 26;311(3):290-4 PMID: 1397330
  18. Beta-peptides: twisting and turning.
    Curr Med Chem. 1999 Oct;6(10):905-25 PMID: 10519905
  19. Stimulatory and inhibitory effects of purified hypothalamic extracts on growth hormone release from rat pituitary in vitro.
    Endocrinology. 1968 Oct;83(4):783-90 PMID: 4879544
  20. Differential distribution of somatostatin receptor subtypes in rat brain revealed by newly developed somatostatin analogs.
    Neuroscience. 1991;41(2-3):581-93 PMID: 1678504
  21. Somatostatin and its receptor family.
    Front Neuroendocrinol. 1999 Jul;20(3):157-98 PMID: 10433861
  22. A field guide to foldamers.
    Chem Rev. 2001 Dec;101(12):3893-4012 PMID: 11740924
  23. The outstanding metabolic stability of a 14C-labeled beta-nonapeptide in rats--in vitro and in vivo pharmacokinetic studies.
    Biopharm Drug Dispos. 2002 Sep;23(6):251-62 PMID: 12214326
  24. Development of somatostatin receptor subtype selective agonists through combinatorial chemistry.
    Curr Opin Drug Discov Devel. 1999 Jul;2(4):293-303 PMID: 19649957
  25. Characterisation of human recombinant somatostatin receptors. 1. Radioligand binding studies.
    Naunyn Schmiedebergs Arch Pharmacol. 1999 Nov;360(5):488-99 PMID: 10598788
  26. Hypothalamic polypeptide that inhibits the secretion of immunoreactive pituitary growth hormone.
    Science. 1973 Jan 5;179(4068):77-9 PMID: 4682131
  27. beta-Peptides: from structure to function.
    Chem Rev. 2001 Oct;101(10):3219-32 PMID: 11710070
  28. Cellular uptake studies with beta-peptides.
    Chembiochem. 2002 Mar 1;3(2-3):257-9 PMID: 11921409
  29. Evidence for two somatostatin-14 receptor types in rat brain cortex.
    Neurosci Lett. 1984 Aug 31;49(3):259-63 PMID: 6149498
  30. Molecular pharmacology of somatostatin receptor subtypes.
    J Endocrinol Invest. 1997 Jun;20(6):348-67 PMID: 9294784
Article Info
Journal
Naunyn-Schmiedeberg's archives of pharmacology
Abbr.
Naunyn Schmiedebergs Arch Pharmacol
ISSN
0028-1298
Published
2003-02-00
Epub
2003-00-24
Pages
95-103
Language
English
Region
Germany
NLM ID
0326264
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com