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Neuron-Derived Neurotrophic Factor Is Mutated in Congenital Hypogonadotropic Hypogonadism

Authors :
Andrew A. Dwyer
Cheng Xu
Federico Santoni
Samuel A. Malone
Gaetan Ternier
Nicolas J Niederländer
Taneli Raivio
Sara Santini
Daniele Conte
Johanna Tommiska
Filippo Casoni
Kristiina Pulli
Daniele Cassatella
Andrea Messina
Nelly Pitteloud
Johanna Känsäkoski
Giorgio R. Merlo
Yoav Gothilf
Kirsi Vaaralahti
Yisrael Sidis
James S. Acierno
Paolo Giacobini
Messina, Andrea
Pulli, Kristiina
Santini, Sara
Acierno, Jame
Känsäkoski, Johanna
Cassatella, Daniele
Xu, Cheng
Casoni, Filippo
Malone, Samuel A.
Ternier, Gaetan
Conte, Daniele
Sidis, Yisrael
Tommiska, Johanna
Vaaralahti, Kirsi
Dwyer, Andrew
Gothilf, Yoav
Merlo, Giorgio R.
Santoni, Federico
Niederländer, Nicolas J.
Giacobini, Paolo
Raivio, Taneli
Pitteloud, Nelly
STEMM - Stem Cells and Metabolism Research Program
Raivio Group
Research Programs Unit
Faculty of Medicine
University of Helsinki
Department of Physiology
University Management
Medicum
HUS Children and Adolescents
Children's Hospital
Source :
Am J Hum Genet
Publication Year :
2020

Abstract

Congenital hypogonadotropic hypogonadism (CHH) is a rare genetic disorder characterized by infertility and the absence of puberty. Defects in GnRH neuron migration or altered GnRH secretion and/or action lead to a severe gonadotropin-releasing hormone (GnRH) deficiency. Given the close developmental association of GnRH neurons with the olfactory primary axons, CHH is often associated with anosmia or hyposmia, in which case it is defined as Kallmann syndrome (KS). The genetics of CHH are heterogeneous, and >40 genes are involved either alone or in combination. Several CHH-related genes controlling GnRH ontogeny encode proteins containing fibronectin-3 (FN3) domains, which are important for brain and neural development. Therefore, we hypothesized that defects in other FN3-superfamily genes would underlie CHH. Next-generation sequencing was performed for 240 CHH unrelated probands and filtered for rare, protein-truncating variants (PTVs) in FN3-superfamily genes. Compared to gnomAD controls the CHH cohort was statistically enriched for PTVs in neuron-derived neurotrophic factor (NDNF) (p = 1.40 x 10(-6)). Three heterozygous PTVs (p.Lys62*, p.Tyr128Thrfs*55, and p.Trp469*, all absent from the gnomAD database) and an additional heterozygous missense mutation (p.Thr201Ser) were found in four KS probands. Notably, NDNF is expressed along the GnRH neuron migratory route in both mouse embryos and human fetuses and enhances GnRH neuron migration. Further, knock down of the zebrafish ortholog of NDNF resulted in altered GnRH migration. Finally, mice lacking Ndnf showed delayed GnRH neuron migration and altered olfactory axonal projections to the olfactory bulb; both results are consistent with a role of NDNF in GnRH neuron development. Altogether, our results highlight NDNF as a gene involved in the GnRH neuron migration implicated in KS.

Details

Database :
OpenAIRE
Journal :
Am J Hum Genet
Accession number :
edsair.doi.dedup.....389f39ff315ce6f9494670ffba8a9ff0