Publication

Screening a large pediatric cohort with GH deficiency for mutations in genes regulating pituitary development and GH secretion: Frequencies, phenotypes and growth outcomes

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  • 05/21/2025
Type of Material
Authors
    Werner F. Blum, University of LeipzigJurgen Klammt, University of LeipzigSerge Amselem, Sorbonne UniversiteHeike M. Pfaeffle, University of LeipzigMarie Legendre, Sorbonne UniversiteMarie-Laure Sobrier, Sorbonne UniversiteMarie-Pierre Luton, Sorbonne UniversiteChristopher J. Child, Eli Lilly & CompanyChristine Jones, Eli Lilly & CompanyAlan G. Zimmermann, Eli Lilly & CompanyCharmian A. Quigley, Sydney Children's HospitalGordon B. Cutler, Gordon Cutler Consultancy LLCCheri L. Deal, University of MontrealJan Lebl, Charles University PragueRon G. Rosenfeld, Oregon Health & Science UniversityJohn Parks, Emory UniversityRoland W. Pfaeffle, University of Leipzig
Language
  • English
Date
  • 2018-10-01
Publisher
  • Elsevier: Creative Commons
Publication Version
Copyright Statement
  • © 2018 Eli LIlly and Company
License
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 2352-3964
Volume
  • 36
Start Page
  • 390
End Page
  • 400
Grant/Funding Information
  • GeNeSIS was sponsored by Eli Lilly and Company (Lilly, Indianapolis, IN, USA). The sponsor funded all aspects of study design, data collection, genetic analyses and statistical analyses, but did not impose any impediment, directly or indirectly, on the publication of the study results.
Supplemental Material (URL)
Abstract
  • Background: Pituitary development and GH secretion are orchestrated by multiple genes including GH1, GHRHR, GLI2, HESX1, LHX3, LHX4, PROP1, POU1F1, and SOX3. We aimed to assess their mutation frequency and clinical relevance in children with severe GH deficiency (GHD). Methods: The Genetics and Neuroendocrinology of Short Stature International Study (GeNeSIS; Clinical Trial Registry Number: NCT01088412) was a prospective, open-label, observational research program for pediatric patients receiving GH treatment, conducted in 30 countries between 1999 and 2015. The study included a sub-study to investigate mutations in the genes listed above. PCR products from genomic blood cell DNA were analyzed by Sanger sequencing. DNA variants were classified as pathogenic according to the recommendations of the American College of Medical Genetics and Genomics. Demographic, auxologic, and endocrine data at baseline and during GH treatment were documented and related to the genotyping results. Findings: The analysis comprised 917 patients. In 92 patients (10%) 33 mutations were found, 16 previously described and 17 novel (52%). Mutation carriers were significantly younger, shorter, and more slowly growing than non-carriers. In general, their peak values in GH stimulation tests were very low; however, in 15/77 (20%) patients with GH1, PROP1, and SOX3 mutations they were only moderately diminished (3-6 μg/L). Two patients with a GH1 mutation developed TSH deficiency and one ADH deficiency. Using logistic multi-regression analysis, significant indicators of a mutation were combined pituitary hormone deficiency, greater patient-parent height difference (SDS), low GH peak, and young age. Final height SDS gain in mutation carriers (mean ± SD 3.4 ± 1.4) was greater than in non-carriers (2.0 ± 1.4; P <.001) and in patients with non-GHD short stature. Interpretation: DNA testing for mutations in children with severe GHD shows a positive finding in approximately 10%. Phenotypes of mutation carriers can be variable. The benefit for clinical practice justifies DNA testing as an important component in the diagnostic work-up of patients with severe GHD. Fund: Eli Lilly and Company, Indianapolis, IN, USA. ClinicalTrials.com registration: NCT01088412.
Author Notes
  • Corresponding author at: Friedrich-Stengel-Str. 14, D-61250 Usingen, Germany. wernblum@gmail.com
Keywords
Research Categories
  • Health Sciences, General

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