Transcriptome profiling of kisspeptin neurons from the mouse arcuate nucleus reveals new mechanisms in estrogenic control of fertility

Author:

Göcz Balázs12ORCID,Rumpler Éva1,Sárvári Miklós1,Skrapits Katalin1ORCID,Takács Szabolcs1ORCID,Farkas Imre1ORCID,Csillag Veronika3ORCID,Trinh Sarolta H.1ORCID,Bardóczi Zsuzsanna4,Ruska Yvette5ORCID,Solymosi Norbert67ORCID,Póliska Szilárd8ORCID,Szőke Zsuzsanna9ORCID,Bartoloni Lucia10ORCID,Zouaghi Yassine10,Messina Andrea10ORCID,Pitteloud Nelly1011,Anderson Ross C.12ORCID,Millar Robert P.12,Quinton Richard1314ORCID,Manchishi Stephen M.15,Colledge William H.15ORCID,Hrabovszky Erik1ORCID

Affiliation:

1. Laboratory of Reproductive Neurobiology, Institute of Experimental Medicine, Budapest 1083, Hungary

2. János Szentágothai Doctoral School of Neurosciences, Semmelweis University, Budapest 1085, Hungary

3. Laboratory of Endocrine Neurobiology, Institute of Experimental Medicine, Budapest 1083, Hungary

4. Department of Cellular and Network Neurobiology, Institute of Experimental Medicine, Budapest 1083, Hungary

5. Laboratory of Integrative Neuroendocrinology, Institute of Experimental Medicine, Budapest 1083, Hungary

6. Centre for Bioinformatics, University of Veterinary Medicine, Budapest 1078, Hungary

7. Department of Physics of Complex Systems, Eötvös Loránd University, Budapest 1117, Hungary

8. Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Debrecen, Debrecen 4032, Hungary

9. Department of Animal Biotechnology, Institute of Genetics and Biotechnology, Hungarian University of Agriculture and Life Sciences, Gödöllő 2100, Hungary

10. Service of Endocrinology, Diabetology, and Metabolism, Lausanne University Hospital, Lausanne 1011, Switzerland

11. Faculty of Biology and Medicine, University of Lausanne, Lausanne 1005, Switzerland

12. Centre for Neuroendocrinology, University of Pretoria, Pretoria 0031, South Africa

13. Translational & Clinical Research Institute, University of Newcastle-upon-Tyne, Newcastle upon Tyne NE1 4EP, United Kingdom

14. Department of Endocrinology, Diabetes & Metabolism, Newcastle-upon-Tyne Hospitals, Newcastle upon Tyne NE1 4LP, United Kingdom

15. Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge CB2 3EG, United Kingdom

Abstract

Kisspeptin neurons in the mediobasal hypothalamus (MBH) are critical targets of ovarian estrogen feedback regulating mammalian fertility. To reveal molecular mechanisms underlying this signaling, we thoroughly characterized the estrogen-regulated transcriptome of kisspeptin cells from ovariectomized transgenic mice substituted with 17β-estradiol or vehicle. MBH kisspeptin neurons were harvested using laser-capture microdissection, pooled, and subjected to RNA sequencing. Estrogen treatment significantly (p.adj. < 0.05) up-regulated 1,190 and down-regulated 1,139 transcripts, including transcription factors, neuropeptides, ribosomal and mitochondrial proteins, ion channels, transporters, receptors, and regulatory RNAs. Reduced expression of the excitatory serotonin receptor-4 transcript (Htr4) diminished kisspeptin neuron responsiveness to serotonergic stimulation. Many estrogen-regulated transcripts have been implicated in puberty/fertility disorders. Patients (n= 337) with congenital hypogonadotropic hypogonadism (CHH) showed enrichment of rare variants in putative CHH-candidate genes (e.g.,LRP1B,CACNA1G,FNDC3A). Comprehensive characterization of the estrogen-dependent kisspeptin neuron transcriptome sheds light on the molecular mechanisms of ovary–brain communication and informs genetic research on human fertility disorders.

Funder

National Science Foundation of Hungary

Hungarian Brain Research Program

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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