HPLC-Based Activity Profiling: Discovery of Piperine as a Positive GABA A Receptor Modulator Targeting a Benzodiazepine-Independent Binding Site
2010; American Chemical Society; Volume: 73; Issue: 2 Linguagem: Inglês
10.1021/np900656g
ISSN1520-6025
AutoresJanine Zaugg, Igor Baburin, Barbara Strommer, Hyun‐Jung Kim, Steffen Hering, Matthias Hamburger,
Tópico(s)Essential Oils and Antimicrobial Activity
ResumoA plant extract library was screened for GABAA receptor activity making use of a two-microelectrode voltage clamp assay on Xenopus laevis oocytes. An ethyl acetate extract of black pepper fruits [Piper nigrum L. (Piperaceae) 100 μg/mL] potentiated GABA-induced chloride currents through GABAA receptors (composed of α1, β2, and γ2S subunits) by 169.1 ± 2.4%. With the aid of an HPLC-based activity profiling approach, piperine (5) was identified as the main active compound, together with 12 structurally related less active or inactive piperamides (1−4, 6−13). Identification was achieved by on-line high-resolution mass spectrometry and off-line microprobe 1D and 2D NMR spectroscopy, using only milligram amounts of extract. Compound 5 induced a maximum potentiation of the chloride currents by 301.9 ± 26.5% with an EC50 of 52.4 ± 9.4 μM. A comparison of the modulatory activity of 5 and other naturally occurring piperamides enabled insights into structural features critical for GABAA receptor modulation. The stimulation of chloride currents through GABAA receptors by compound 5 was not antagonized by flumazenil (10 μM). These data show that piperine (5) represents a new scaffold of positive allosteric GABAA receptor modulators targeting a benzodiazepine-independent binding site.
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