Literature DB >> 31539878

A homozygous mutation in the highly conserved Tyr60 of the mature IGF1 peptide broadens the spectrum of IGF1 deficiency.

Ana Claudia Keselman1, Ayelen Martin1, Paula Alejandra Scaglia1, Nora María Sanguineti1, Romina Armando2, Mariana Gutiérrez1, Débora Braslavsky1, María Gabriela Ballerini1, María Gabriela Ropelato1, Laura Ramirez1, Estefanía Landi1, Sabina Domené1, Julia F Castro1, Hamilton Cassinelli1, Bárbara Casali1, Graciela Del Rey1, Ángel Campos Barros3, Julián Nevado Blanco3, Horacio Domené1, Héctor Jasper1, Claudia Arberas2, Rodolfo A Rey1, Pablo Lapunzina-Badía3, Ignacio Bergadá1, Patricia A Pennisi1.   

Abstract

BACKGROUND: IGF1 is a key factor in fetal and postnatal growth. To date, only three homozygous IGF1 gene defects leading to complete or partial loss of IGF1 activity have been reported in three short patients born small for gestational age. We describe the fourth patient with severe short stature presenting a novel homozygous IGF1 gene mutation.
RESULTS: We report a boy born from consanguineous parents at 40 weeks of gestational age with intrauterine growth restriction and severe postnatal growth failure. Physical examination revealed proportionate short stature, microcephaly, facial dysmorphism, bilateral sensorineural deafness and mild global developmental delay. Basal growth hormone (GH) fluctuated from 0.2 to 29 ng/mL, while IGF1 levels ranged from -1.15 to 2.95 SDS. IGFBP3 was normal-high. SNP array delimited chromosomal regions of homozygosity, including 12q23.2 where IGF1 is located. IGF1 screening by HRM revealed a homozygous missense variant NM_000618.4(IGF1):c.322T>C, p.(Tyr108His). The change of the highly conserved Tyr60 in the mature IGF1 peptide was consistently predicted as pathogenic by multiple bioinformatic tools. Tyr60 has been described to be critical for IGF1 interaction with type 1 IGF receptor (IGF1R). In vitro, HEK293T cells showed a marked reduction of IGF1R phosphorylation after stimulation with serum from the patient as compared to sera from age-matched controls. Mutant IGF1 was also less efficient in inducing cell growth.
CONCLUSION: The present report broadens the spectrum of clinical and biochemical presentation of homozygous IGF1 defects and underscores the variability these patients may present depending on the IGF/IGF1R pathway activity.

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Year:  2019        PMID: 31539878     DOI: 10.1530/EJE-19-0563

Source DB:  PubMed          Journal:  Eur J Endocrinol        ISSN: 0804-4643            Impact factor:   6.664


  6 in total

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Journal:  Cells       Date:  2022-06-20       Impact factor: 7.666

2.  Components of IGF-axis in growth disorders: a systematic review and patent landscape report.

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Review 6.  Genetic causes of growth hormone insensitivity beyond GHR.

Authors:  Vivian Hwa; Masanobu Fujimoto; Gaohui Zhu; Wen Gao; Corinne Foley; Meenasri Kumbaji; Ron G Rosenfeld
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  6 in total

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