Autism-linked NLGN3 is a key regulator of gonadotropin-releasing hormone deficiency

Author:

Oleari Roberto1ORCID,Lettieri Antonella234ORCID,Manzini Stefano1ORCID,Paganoni Alyssa1ORCID,André Valentina1,Grazioli Paolo4ORCID,Busnelli Marco1,Duminuco Paolo5,Vitobello Antonio67,Philippe Christophe67,Bizaoui Varoona8ORCID,Storr Helen L.910,Amoruso Federica1ORCID,Memi Fani11,Vezzoli Valeria5,Massa Valentina234ORCID,Scheiffele Peter12ORCID,Howard Sasha R.910ORCID,Cariboni Anna1ORCID

Affiliation:

1. University of Milan 1 Department of Pharmacological and Biomolecular Sciences , , Milan 20133 , Italy

2. CRC Aldo Ravelli for Neurotechnology and Experimental Brain Therapeutics 2 , Department of Health Sciences , , Milan 20142 , Italy

3. University of Milan 2 , Department of Health Sciences , , Milan 20142 , Italy

4. University of Milan 3 Department of Health Sciences , , Milan 20142 , Italy

5. Laboratory of Endocrine and Metabolic Research, IRCCS Istituto Auxologico Italiano 4 , Cusano Milanino 20095 , Italy

6. Unité Fonctionnelle Innovation en Diagnostic Génomique des Maladies Rares, Fédération Hospitalo-Universitaire (FHU) TRANSLAD, CHU Dijon Bourgogne 5 , Dijon 21079 , France

7. INSERM UMR 1231 GAD (Génétique des Anomalies du Développement), Université de Bourgogne 6 , Dijon 21070 , France

8. Centre Hospitalier de l'Estran 7 Genetics and Neurodevelopment , , Pontorson 50170 , France

9. Centre for Endocrinology William Harvey Research Institute Barts and the London School of Medicine and Dentistry, Queen Mary University of London 8 , London EC1M 6BQ , UK

10. Royal London Children's Hospital, Barts Health NHS Trust 9 , London E1 1BB , UK

11. Wellcome-MRC Cambridge Stem Cell Institute, Jeffrey Cheah Biomedical Centre 10 , Cambridge CB2 0AW , UK

12. Biozentrum of the University of Basel 11 , Basel 4056 , Switzerland

Abstract

ABSTRACT Gonadotropin-releasing hormone (GnRH) deficiency (GD) is a disorder characterized by absent or delayed puberty, with largely unknown genetic causes. The purpose of this study was to obtain and exploit gene expression profiles of GnRH neurons during development to unveil novel biological mechanisms and genetic determinants underlying GD. Here, we combined bioinformatic analyses of immortalized and primary embryonic GnRH neuron transcriptomes with exome sequencing from GD patients to identify candidate genes implicated in the pathogenesis of GD. Among differentially expressed and filtered transcripts, we found loss-of-function (LoF) variants of the autism-linked neuroligin 3 (NLGN3) gene in two unrelated patients co-presenting with GD and neurodevelopmental traits. We demonstrated that NLGN3 is upregulated in maturing GnRH neurons and that NLGN3 wild-type, but not mutant, protein promotes neuritogenesis when overexpressed in developing GnRH cells. Our data represent proof of principle that this complementary approach can identify new candidate GD genes and demonstrate that LoF NLGN3 variants can contribute to GD. This novel genotype–phenotype correlation implies common genetic mechanisms underlying neurodevelopmental disorders, such as GD and autistic spectrum disorder.

Funder

Ministero della Salute

National Institute for Health and Care Research

Wellcome Trust

Barts Charity

Rosetrees Trust

Innovative Medicines Initiative

European Society for Paediatric Endocrinology

Collegio Ghislieri di Pavia

British Society for Neuroendocrinology

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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