Planta Med 2008; 74(5): 521-526
DOI: 10.1055/s-2008-1074491
Pharmacology
Original Paper
© Georg Thieme Verlag KG Stuttgart · New York

HPLC-Based Activity Profiling Approach for the Discovery of GABAA Receptor Ligands using an Automated Two Microelectrode Voltage Clamp Assay on Xenopus Oocytes

Hyun Jung Kim1 , 3 , Igor Baburin2 , 3 , Sophia Khom2 , Steffen Hering2 , Matthias Hamburger1
  • 1Institute of Pharmaceutical Biology, University of Basel, Basel, Switzerland
  • 2Institute of Pharmacology and Toxicology, University of Vienna, Vienna, Austria
  • 3The authors equally contributed to this work
Further Information

Publication History

Received: November 14, 2007 Revised: February 16, 2008

Accepted: February 24, 2008

Publication Date:
01 April 2008 (online)

Abstract

An approach for rapid HPLC-based profiling for new GABAA ligands of natural origin has been developed. Active extracts are separated by a single injection of 3 - 10 mg of extract onto a semi-preparative (150 × 10 mm i. d.) HPLC column with gradient elution and time-based fractionation. The microfractions are tested in an automated two-microelectrode voltage-clamp assay on Xenopus oocytes expressing recombinant GABAA channels composed of α1, β2 and γ2S subunits. The protocol has been validated by spiking experiments with inactive extract and the GABAA receptor ligand magnolol, and by profiling of active extracts such as valerian extract containing the known GABAA receptor ligand valerenic acid. For dereplication of GABA containing extracts, we established a rapid and simple procedure by which GABA is analyzed as OPA derivative by reversed-phase HPLC. This dereplication protocol was validated with plant and fungal extracts which had been previously tested active or inactive in the oocyte assay and with spiking experiments.

Abbreviations

GABA:γ-aminobutyric acid

OPA:o-phthaldialdehyde

References

  • 1 Barnard E A, Skolnick P, Olsen R W, Mohler H, Sieghart W, Biggio G. et al . International Union of Pharmacology. XV. Subtypes of γ-aminobutyric acid A receptors: classification on the basis of subunit structure and receptor function.  Pharmacol Rev. 1998;  50 291-313
  • 2 Hevers W, Luddens H. The diversity of GABAA receptors: Pharmacological and electrophysiological properties of GABAA channel subtypes.  Mol Neurobiol. 1998;  18 35-86
  • 3 Bonnert T P, McKernan R M, Farrar S, le Bourdellès B, Heavens R P, Smith D W. et al . Θ, a novel γ-aminobutyric acid type A receptor subunit.  Proc Natl Acad Sci USA. 1999;  96 9891-6
  • 4 Benke D, Mertens S, Trzeciak A, Gillessen D, Mohler H. GABAA receptors display association of γ2-subunit with α1- and β2/3-subunits.  J Biol Chem. 1991;  266 4478-83
  • 5 Benke D, Fritschy J M, Trzeciak A, Bannwarth W, Mohler H. Distribution, prevalence, and drug binding profile of γ-aminobutyric acid type A receptor subtypes differing in the β-subunit variant.  J Biol Chem. 1994;  269 27 100-7
  • 6 Boileau A J, Baur R, Sharkey L M, Sigel E, Czajkowski C. The relative amount of cRNA coding for γ2 subunits affects stimulating by benzodiazepines in GABAA receptors expressed in Xenopus oocytes.  Neuropharmacology. 2002;  43 695-700
  • 7 Hobbs W R, Rall T W, Verdoorn T A. In: Hardmann J, Limbird L, editors Goodman and Gilman’s the pharmacological basis of therapeutics. Columbus; McGraw-Hill Companies Inc. 1996: 361-98
  • 8 Whiting P J. GABA-A receptors: a viable target for novel anxiolytics?.  Curr Opin Pharmacol. 2006;  6 24-9
  • 9 Medina J H, Pena C, Levi de Stein M, Wolfman C, Paladini A C. Benzodiazepine-like molecules, as well as other ligands for the brain benzodiazepine receptors, are relatively common constituents of plants.  Biochem Biophys Res Commun. 1989;  165 547-53
  • 10 Stephenson F A. The GABAA receptors.  Biochem J. 1995;  310 1-9
  • 11 Höld K M, Sirisoma N S, Ikeda T, Narahashi T, Casida J E. α-Thujone (the active component of absinthe): γ-aminobutyric acid type A receptor modulation and metabolic detoxification.  Proc Natl Acad Sci USA. 2000;  97 3826-31
  • 12 Nielsen M, Frokjaer S, Braestrup C. High affinity of the natrually-occurring biflavonoid, amentoflavone, to brain benzodiazepine receptors in vitro.  Biochem Pharmacol. 1988;  37 3285-7
  • 13 Ai J, Dekermendjian K, Wang X, Nielsen M, Witt M R. 6-Methylflavone, a benzodiazepine receptor ligand with antagonistic properties on rat brain and human recombinant GABAA receptors in vitro.  Drug Develop Res. 1997;  41 99-106
  • 14 Tsang S Y, Xue H. Development of effective therapeutics targeting the GABAA receptor: naturally occurring alternatives.  Curr Pharm Design. 2004;  10 1035-44
  • 15 Khom S, Baburin I, Timin E, Hohaus A, Trauner G, Kopp B. et al . Valerenic acid potentiates and inhibits GABAA receptors: Molecular mechanism and subunit specificity.  Neuropharmacology. 2007;  53 178-87
  • 16 Baur R, Simmen U, Senn M, Séquin U, Sigel E. Novel plant substances acting as β subunit isoform-selective positive allosteric modulators of GABAA receptors.  Mol Pharmacol. 2005;  68 787-92
  • 17 Huen M S, Hui K M, Leung J W, Sigel E, Baur R, Wong J T. et al . Naturally occurring 2′-hydroxyl-substituted flavonoids as high-affinity benzodiazepine site ligands.  Biochem Pharmacol. 2003;  66 2397-407
  • 18 Hansen R S, Paulsen I, Davis M. Determinants of amentoflavone interaction at the GABAA receptor.  Eur J Pharmacol. 2005;  519 199-207
  • 19 Potterat O, Hamburger M. Natural products in drug discovery - concepts and approaches for tracking bioactivity.  Curr Org Chem. 2006;  10 899-920
  • 20 Danz H, Stoyanova S, Wippich P, Brattström A, Hamburger M. Identification and isolation of the cyclooxygenase-2 inhibitory principle in Isatis tinctoria.  Planta Med. 2001;  67 411-6
  • 21 Dittmann K, Gerhäuser C, Klimo K, Hamburger M. HPLC-based activity profiling of Salvia miltiorrhiza for MAO A and iNOS inhibitory activities.  Planta Med. 2004;  70 909-13
  • 22 Hamburger M, Rüster G U, Melzig M F. HPLC based activity profiling for inhibitors of human neutrophil elastase in Isatis tinctoria leaf extracts.  Nat Prod Commun. 2006;  1 1107-10
  • 23 Moret S, Populin T, Conte L S, Cosens G. HPLC determination of free nitrogenous compounds of Centaurea solstitialis (Asteraceae), the cause of equine nigropallidal encephalomalacia.  Toxicon. 2005;  46 651-7
  • 24 Khom S, Baburin I, Timin E N, Hohaus A, Sieghart W, Hering S. Pharmacological properties of GABAA receptors containing γ1 subunits.  Mol Pharmacol. 2006;  69 640-9
  • 25 Methfessel C, Witzemann V, Takahashi T, Mishina M, Numa S, Sakmann B. Patch clamp measurements on Xenopus laevis oocytes: currents through endogenous channels and implanted acetylcholine receptor and sodium channels.  Pflugers Arch. 1986;  407 577-88
  • 26 Hering S. Small-volume and rapid extracellular solution exchange around Xenopus oocytes during voltage-clamp recordings.  Pflugers Arch. 1998;  436 303-7
  • 27 Baburin I, Beyl S, Hering S. Automated fast perfusion of Xenopus oocytes for drug screening.  Pflugers Arch Eur J Physiol. 2006;  453 117-23
  • 28 Squires R F, Ai J, Witt M R, Kahnberg P, Saederup E, Sterner O. et al . Honokiol and magnolol increase the number of [3H]muscimol binding sites three-fold in rat forebrain membranes in vitro using a filtration assay, by allosterically increasing the affinities of low-affinity sites.  Neurochem Res. 1999;  24 1593-602
  • 29 Yuan C -S, Mehendale S, Xiao Y, Aung H H, Xie J T, Ang-Lee M K. The gamma-aminobutyric acidergic effects of valerian and valerenic acid on rat brainstem neuronal activity.  Anesth Analg. 2004;  98 353-8
  • 30 Schumacher B, Scholle S, Hölzl J, Khudeir N, Hess S, Müller C E. Lignans isolated from Valerian: Identification and characterization of a new olivil dervivative with partial agonistic activity at A1 adenosine receptors.  J Nat Prod. 2002;  65 1479-85
  • 31 Navarrete A, Avula B, Choi Y -W, Khan I A. Chemical fingerprinting of Valeriana species: simultaneous determination of valerenic acids, flavonoids, and phenylpropanoids using liquid chromatography with ultraviolet detection.  J AOAC Int. 2006;  89 8-15

Prof. Dr. Matthias Hamburger

Institute of Pharmaceutical Biology

University of Basel

Klingelbergstrasse 50

4056 Basel

Switzerland

Phone: +41-61-267-1425

Fax: +41-61-267-1474

Email: Matthias.Hamburger@unibas.ch

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