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Published on: December 29, 2023
Ghrelin Increases Glutamate Release at the Perforant Path-Dentate Gyrus Granule Cell Synapses by Cross-Activating
Chidiebele S Oraegbuna1, Wendie A Hasler1, Xuesong Chen1
1Department of Biomedical Sciences, School of Medicine and Health Sciences, University of North Dakota, Grand Forks, USA.
Abstract:
Ghrelin is a multifunctional peptide hormone with receptors present in various brain tissues including the hippocampus and has been associated with neuroprotection, neuromodulation, and memory processing. Ghrelin is an endogenous ligand for growth hormone secretagogue receptors (GHSRs). Here we studied the roles and mechanisms of ghrelin in glutamatergic transmission at the perforant path (PP)-granule cell (GC) synapses in the dentate gyrus by recording AMPA EPSCs in hippocampal slices cut from both male and female C57BL/6 J mice. Our results showed that ghrelin concentration-dependently elicited a persistent enhancement of AMPA EPSCs. The ghrelin-induced augmentation of glutamatergic transmission was mediated by increasing presynaptic glutamate release because ghrelin decreased the coefficient of variation (C.V.) and paired-pulse ratio of AMPA EPSCs, increased NMDA EPSCs as well and enhanced the frequency with no effect on the amplitude of mEPSCs. Ghrelin enlarged the size of readily releasable pool and increased release probability. Ghrelin-elicited increases in glutamate release did not require the functions of Gαq-phospholipase C pathway and Gαi, but was dependent on Gαs and cAMP/EPAC/PI3K pathway. As GHSRs have been shown to activate cAMP signals via heterodimerization with dopamine D1 receptors, we probed the roles of D1 receptors in ghrelin-mediated facilitation of glutamate release. Our results indicated that ghrelin enhanced glutamate release via interaction with D1 receptors. Our results may provide a novel cellular and molecular mechanism whereby ghrelin enhances glutamatergic transmission.
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