Novel Insulin-Like Growth Factor 1 Gene Mutation: Broadening of the Phenotype and Implications for Insulin Resistance

Author:

Giacomozzi Claudio1ORCID,Martin Ayelen2,Fernández María Celia2,Gutiérrez Mariana2,Iascone Maria3ORCID,Domené Horacio M2,Dominici Fernando P4,Bergadá Ignacio2,Cangiano Biagio56ORCID,Persani Luca56ORCID,Pennisi Patricia A2ORCID

Affiliation:

1. Unit of Pediatrics, Department of Maternal and Child Health, Carlo Poma Hospital, ASST-Mantova , 46100 Mantua , Italy

2. Centro de Investigaciones Endocrinológicas ‘Dr. César Bergadá’ (CEDIE) CONICET—FEI—División de Endocrinología, Hospital de Niños Dr. Ricardo Gutiérrez , C1425EFD Buenos Aires , Argentina

3. Department of Medical Genetics, ASST Papa Giovanni XXIII , 24127 Bergamo , Italy

4. Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Departamento de Química Biológica (IQUIFIB-CONICET) , 1113AAB Buenos Aires , Argentina

5. Department of Medical Biotechnology and Translational Medicine, University of Milan , 20100 Milan , Italy

6. Department of Endocrine and Metabolic Diseases, IRCCS Istituto Auxologico Italiano , 20100 Milan , Italy

Abstract

Abstract Context Insulin-like growth factor (IGF)1 gene mutations are extremely rare causes of pre- and postnatal growth retardation. Phenotype can be heterogenous with varying degrees of neurosensory deafness, cognitive defects, glucose metabolism impairment and short stature. Objective This study describes a 12.6-year-old girl presenting with severe short stature and insulin resistance, but with normal hearing and neurological development at the lower limit of normal. Methods DNA was obtained from the proband and both parents for whole exome sequencing (WES). In silico analysis was performed to predict the impact of the IGF1 variant on IGF1 and insulin receptors (IGF1R and IR) signaling. Phosphorylation of the IGF1R at activating Tyr residues and cell proliferation analyses were used to assess the ability of each subject's IGF1 to bind and activate IGF1R. Results The proband had low immunoreactive IGF1 in serum and WES revealed a novel homozygous IGF1 missense variant (c.247A>T), causing a change of serine 83 for cysteine (p.Ser83Cys; p.Ser35Cys in mature peptide). The proband's parents were heterozygous for this mutation. In silico analyses indicated the pathogenic potential of the variant with electrostatic variations with the potential of hampering the interaction with the IGF1R but strengthening the binding to IR. The mutant IGF1 protein had a significantly reduced activity on in vitro bioassays. Conclusion We describe a novel IGF1 mutation leading to severe loss of circulating IGF1 immunoreactivity and bioactivity. In silico modeling predicts that the mutant IGF1 could interfere with IR signaling, providing a possible explanation for the severe insulin resistance observed in the patient. The absence of significant hearing and neurodevelopmental involvement in the present case is unusual and broadens the clinical spectrum of IGF1 mutations.

Funder

Italian Ministry of University and Research

Rome and Istituto Auxologico Italiano

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference36 articles.

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5. A novel mutation in a patient with insulin-like growth factor 1 (IGF1) deficiency;Bonapace;J Med Genet,2003

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