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Altered Electrophysiology and Transcriptome of GnRH Neurons in Middle-Aged Female Mice.

Abstract

Aging affects the reproductive system, although its impact on GnRH neurons is mainly unexplored. Thus, we compared the transcriptome and electrophysiology of GnRH neurons obtained from female middle-aged (MA, 400-430 d) and young (Y, 70 d), diestrous mice, respectively. Transcriptomic analysis revealed reproductive senescence-related molecular changes in one-third of the MA mice. The upregulated genes (n = 225) were linked to immune signaling, olfactory- and vomeronasal receptors. The downregulated genes (n = 233) were related to mRNA processing, G-protein-coupled receptors, oxidative phosphorylation, electron transport, and estrogen signaling. In addition, ion channel (Na, K, Ca), neurotransmitter (ACh, GABA, glutamate), and various neuropeptide receptor-coding genes showed differential expression indicating functional alterations of the cells. Accordingly, whole-cell patch-clamp recordings revealed a twofold increase in spontaneous firing frequency of MA-GnRH neurons. Significant changes were also observed in characteristics of action potentials and afterhyperpolarization amplitudes. Conspicuously, miniature postsynaptic currents were absent in 72% of MA-GnRH neurons, and pharmacological blockade of GABAA and glutamate receptors didn't affect the firing rate. However, administration of their ligands evoked inward currents and facilitated firing in both animal groups, although with a decreased efficacy in MA animals. MA-GnRH neurons sustained responsiveness to estradiol, G-protein inhibition, and kisspeptin (KP) like those of young animals. While KP receptor antagonist, KP-234, diminished firing frequency of MA-GnRH neurons, it had no effect on young GnRH cells. Collectively, these findings revealed that both the transcriptome and electrophysiological activity of GnRH neurons change at middle age and the explored alterations are hallmarks of early phase of reproductive senescence.
Copyright © 2025 the authors.

Authors

Imre Farkas, Csaba Vastagh, Imre Kalló, Levente Kontra, Zsolt Liposits

Laboratory of Endocrine Neurobiology, HUN-REN Institute of Experimental Medicine, Szigony u. 43, Budapest, H-1083, Hungary farkas.imre@koki.hu liposits.zsolt@koki.hu.

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14 products referenced in this paper

(KIT0312-I) Arcturus™ Paradise™ Plus RNA Extraction and Isolation Kit

a Kit by Thermo Scientific

(WTA2) Complete Whole Transcriptome Amplification Kit

a Kit by SIGMA

(bx51wi) BX51WI Fixed Stage Microscope

an Instrument by Evident Scientific

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Journal The Journal of Neuroscience

Volume 45

Issue 47

Publication Date 19 November 2025

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Publication metadata is provided by PubMed®, courtesy of the U.S. National Library of Medicine. Information for this publication was last updated on 2026-08-14 12:44:10 UTC.

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