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Activation of the Melatonin Receptor MT <sub>1</sub> by the Natural Product Gastrodin to Promote Sleep

Lijing Zhang, Mengli Lan, Hui Chen, Richard J. Ward, Yaru Zhao, Jing Guo, Lang Xiong, Xiuyu Yang, Yuxuan Pu, Cheng Xiang, Su An, Xiao‐Xi Guo, Tian‐Rui Xu, Yang Yang

2024Journal of Pineal Research12 citationsDOIOpen Access PDF

Abstract

ABSTRACT The activation of melatonin receptors, belonging to the G‐protein coupled receptors (GPCRs) superfamily, has been recognized as a vital approach in the clinical management of sleep disorders. Although the natural agonist melatonin and synthetic agonists (e.g., ramelteon) targeting these receptors have been extensively studied, the identification of natural compounds acting as ligands remains elusive. We applied a combination of methods including GPCR‐induced ERK1/2 MAP kinase phosphorylation assay, inhibition of forskolin‐stimulated cAMP production, drug affinity responsive target stability (DARTS), cellular thermal shift assay (CETSA), solvent‐induced protein precipitation (SIP), 2‐[ 125 I]‐iodomelatonin binding assay, fluorescence resonance energy transfer (FRET), and molecular docking to investigate MT 1 activation by gastrodin and the gastrodin–MT 1 interaction. The in vivo study was performed with mice whose MT 1 receptors were knocked down in the suprachiasmatic nucleus (SCN) of the brain. The sleep behavior and sleep‐related hypothalamic neurotransmitters were evaluated. The results identified that the gastrodin acted as an agonist of MT 1 through direct binding to the receptor. The interaction of gastrodin‐MT 1 was similar to that of melatonin–MT 1 . The in vivo sleep‐promoting effect of the gastrodin depended on the presence of MT 1 in the SCN and was associated with the hypothalamic neurotransmitters, similarly to melatonin.

Topics & Concepts

GastrodinMelatoninAgonistReceptorG protein-coupled receptorMelatonin receptorChemistryPharmacologyBiologyBiochemistryEndocrinologyChromatographyCircadian rhythm and melatoninBiological and pharmacological studies of plantsReceptor Mechanisms and Signaling