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IRF2BPL Causes Mild Intellectual Disability Followed by Late-Onset Ataxia
Solveig Heide1, Claire-Sophie Davoine1, Paulina Cunha1
1From the Genetic Department (S.H., B.K., P. Charles, D.H., A.D.), Assistance Publique-Hôpitaux de Paris (AP-HP) Pitié-Salpêtrière; Reference Center for Rare Diseases « Intellectual disabilites of rare causes » « Déficiences Intellectuelles de Causes Rares » (S.H., P. Charles, D.H.), Pitié-Salpêtrière Hospital; Sorbonne Université (C.-S.D., P. Cunha, G.S., A.B., A.D.), Paris Brain Institute (ICM Institut du Cerveau), INSERM, CNRS, Assistance Publique-Hôpitaux de Paris (AP-HP); Department of Neurology (C.S.-G.), University Hospital d'Angers; and INCIA (G.S.), EPHE, Université de Bordeaux, France.
Insights
Pathogenic variants in the interferon regulatory factor 2 binding protein like (IRF2BPL) gene can cause both neurodevelopmental disorders and late-onset neurodegenerative conditions, highlighting a shared molecular spectrum.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- Neurodevelopmental and neurodegenerative disorders are often viewed as distinct entities.
- The IRF2BPL gene has been linked to pediatric developmental and epileptic encephalopathy and late-onset ataxia.
- Limited information exists on the neurodevelopmental impact of IRF2BPL variants in adults.
Purpose of the Study:
- To investigate the neurodevelopmental and neurodegenerative aspects of IRF2BPL pathogenic variants in adults.
- To explore the phenotypic spectrum of IRF2BPL-associated disorders.
Main Methods:
- Clinical and molecular data from 18 individuals with truncating IRF2BPL variants were analyzed.
- Exome and genome sequencing were employed to identify pathogenic variants.
- A large pedigree with a neurodevelopmental disorder and late-onset cerebellar ataxia was studied.
Main Results:
- Truncating IRF2BPL variants were identified in individuals with neurodevelopmental disorders (NDD) and late-onset cerebellar ataxia.
- A specific variant (p.(Gln117*)) was found in a family with both NDD and ataxia.
- Another variant (p.(Ser313*)) showed incomplete penetrance, with an asymptomatic mother passing it to her affected child.
Conclusions:
- Neurologic evaluation of adults with NDD is crucial for identifying potential late-onset neurodegenerative conditions.
- Neurodevelopmental disorders and late cerebellar changes can represent a single molecular spectrum linked to IRF2BPL.
- IRF2BPL variants contribute to a spectrum of neurological disorders affecting both development and degeneration.
Background And Objectives:
Neurodevelopmental and neurodegenerative disorders have long been considered as different clinical and molecular entities, and only a few genes are known to be involved in both processes. The IRF2BPL (interferon regulatory factor 2 binding protein like) gene was implicated in a severe pediatric phenotype characterized by developmental and epileptic encephalopathy and early regression. In parallel, inherited IRF2BPL variants have been reported in cohorts of patients with late-onset progressive dystonic and ataxic syndrome with few information about the neurodevelopment of these patients. This study aimed to describe both neurodevelopmental and neurodegenerative aspects of the phenotype in adults with IRF2BPL pathogenic variant.
Methods:
We report here the clinical and molecular data of 18 individuals carrying truncating IRF2BPL variants (identified by either exome or genome sequencing), including a large pedigree of 16 patients presenting with a neurodevelopmental disorder (NDD) associated with late-onset cerebellar ataxia and atrophy.
Results:
Genome sequencing identified the p.(Gln117*) variant in a large family first assessed for familial ataxia, with multiple individuals presenting with NDD. The p.(Ser313*) variant was identified by exome sequencing in a second family with a young adult patient with NDD without ataxia which was inherited from her asymptomatic mother, suggesting incomplete penetrance of IRF2BPL-linked disorders.
Discussion:
This study illustrates the importance of neurologic evaluation of adult patients initially diagnosed with NDD to detect a late-onset neurodegenerative condition. Two different disorders may be clinically diagnosed in the same family, when not considering that NDD and late cerebellar changes may be part of the same molecular spectrum such as for IRF2BPL.
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Translation
Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of...