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Intronic IGF1R variant causing aberrant splicing, short stature, and neurological impairments
Liya Kerem1,2, Jonathan Rips2,3, Adam Zaretsky4
1Division of Pediatric Endocrinology, Department of Pediatrics, Hadassah Medical Organization, Jerusalem, Israel.
Insights
A novel genetic variant in the insulin-like growth factor 1 receptor (IGF1R) gene causes aberrant splicing, leading to short stature in children small for gestational age (SGA). This finding emphasizes genetic testing for diagnosing growth disorders.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Approximately 10% of children born small for gestational age (SGA) experience persistent short stature, potentially qualifying for growth hormone (GH) therapy.
- Pathogenic variants in the insulin-like growth factor 1 receptor (IGF1R) gene are linked to SGA, short stature, neurodevelopmental issues, and varied responses to GH therapy.
Purpose of the Study:
- To characterize the clinical presentation and molecular mechanism of a rare intronic IGF1R variant found in a family with affected individuals.
- To expand the understanding of the clinical and molecular spectrum of IGF1R-related disorders.
Main Methods:
- Whole-exome sequencing (WES) was performed on the proband.
- Segregation studies and Sanger sequencing were conducted within the family.
- Complementary DNA (cDNA) analysis was used to investigate transcript splicing.
Main Results:
- A heterozygous intronic variant (c.3722+5G>A) in IGF1R was identified in the affected mother.
- The variant segregated with the affected status in the family.
- cDNA analysis revealed that the variant causes intronic retention, leading to a frameshift and premature truncation, classifying it as likely pathogenic.
Conclusions:
- Genetic testing is valuable for children with SGA and persistent short stature.
- This study characterizes a novel IGF1R intronic variant, elucidating its role in aberrant splicing and contributing to the understanding of short stature and neurodevelopmental disorders.
- Molecular diagnostics are crucial for unexplained short stature and may guide future IGF1R-targeted therapies.
Abstract:
Approximately 10% of children born small for gestational age (SGA) fail to achieve catch-up growth, resulting in persistent short stature and eligibility for growth hormone (GH) therapy under established guidelines. Pathogenic variants in insulin-like growth factor 1 receptor (IGF1R) are associated with SGA, syndromic short stature, neurocognitive impairment, and variable responsiveness to GH therapy. This study aimed to characterize the clinical phenotype and elucidate the molecular mechanism underlying a rare intronic variant in IGF1R identified in an affected family. Here, we performed whole-exome sequencing (WES) on a single individual, followed by segregation studies in the family and Sanger sequencing. cDNA studies were pursued to evaluate mis-spliced transcripts. WES of the proband's affected mother revealed a rare heterozygous variant in IGF1R (NM_000875.5): c.3722+5G>A. Sanger sequencing confirmed segregation of the variant with the affected status in available family members. cDNA analysis showed that the variant results in intronic retention of 134 nucleotides immediately following the penultimate exon of IGF1R. This leads to a frameshift and introduction of a premature truncation codon, supporting the classification of the variant as likely pathogenic. Our study highlights the utility of genetic testing in SGA children with persistent short stature. By characterizing a novel IGF1R intronic variant causing aberrant splicing, we expand the understanding of its clinical spectrum and molecular underpinning. The findings underscore the importance of molecular diagnostics in unexplained short stature and neurodevelopmental disorders and may inform future therapeutic strategies targeting the IGF1R signaling.
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