hrp0095p1-347 | Pituitary, Neuroendocrinology and Puberty | ESPE2022

Congenital hypogonadotropic hypogonadism and Cornelia de Lange Syndrome share clinical phenotype and genetic background

Kolesinska Zofia , Xu Cheng , Messina Andrea , Acierno James , Niederlander Nicolas , Santoni Federico , Papadakis Georgios , Pignatelli Duarte , Avbelj Stefanija Magdalena , Smith Kimberly Keefe , Balasubramanian Ravikumar , Crowley William , Pitteloud Nelly

Background: Congenital hypogonadotropic hypogonadism (CHH) is caused by impaired function of GnRH neurons, which clinically manifests by incomplete or absent puberty and infertility. The phenotype may be broader with other developmental anomalies such as anosmia, which is known as Kallmann syndrome. To date, there are more than 40 genes in which mutations underlie CHH. Cornelia de Lange Syndrome (CdLS) is characterized by facial dysmorphia, psychomotor delay, ...

hrp0084fc14.1 | Puberty | ESPE2015

KLB, Encoding the Co-receptor for FGF21, is Mutated in Congenital Hypogonadotropic Hypogonadism

Xu Cheng , Miraoui Hichem , Somm Emmanuel , Kinnunen Tarja , Dwyer Andrew , Preitner Nadia , Sykiotis Gerasimos , Santini Sara , Quinton Richard , Plummer Lacey , Crowley William , Hauschild Michael , Phan-Hug Franziska , Sidis Yisrael , Mohammadi Moosa , Messina Andrea , Pitteloud Nelly

Background: The hepatokine FGF21 signals through a dual receptor complex consisting of FGFR1c and the obligatory co-receptor β-Klotho to regulate glucose and lipid metabolism. Interestingly, female mice with Fgf21 transgenic overexpression are not only resistant to high-fat diet induced obesity but also present with hypogonadotropic hypogonadism (HH) and infertility. Loss-of-function (LOF) mutations in FGFR1 are a frequent cause of congenital HH (CHH). W...

hrp0092fc15.1 | Late Breaking Abstracts | ESPE2019

DLG2 Mutations in Patients with Delayed or Absent Puberty

Jee Youn Hee , Won Sehoon , Lui Julian C. , Jennings Melissa , Whalen Philip , Yue Shanna , Cheetham Tim , Boden Matthew G. , Radovick Sally , Quinton Richard , Leschek Ellen W. , Aguilera Greti , Yanovski Jack A. , Seminara Stephanie B. , Roche Katherine W. , Crowley William F. , Delaney Angela , Baron Jeffrey

NMDA (N-Methyl-D-aspartic acid) receptors have been shown to control the timing of sexual maturation in laboratory animals. Therefore, variants in genes impacting NMDA receptor signaling might be predicted to affect human puberty. We studied an extended family with extremely delayed puberty (menarche at 16.5 - 18 years for female family members and pubertal onset at 16 years for male family members). Exome sequencing revealed a rare missense variant (F900V) in DLG2, w...