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Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Biallelic MED27 variants lead to variable ponto-cerebello-lental degeneration with movement disorders
Reza Maroofian1, Rauan Kaiyrzhanov1, Elisa Cali1
1Department of Neuromuscular Diseases, University College London, Queen Square, Institute of Neurology, London WC1N 3BG, UK.
Abstract:
MED27 is a subunit of the Mediator multiprotein complex, which is involved in transcriptional regulation. Biallelic MED27 variants have recently been suggested to be responsible for an autosomal recessive neurodevelopmental disorder with spasticity, cataracts and cerebellar hypoplasia. We further delineate the clinical phenotype of MED27-related disease by characterizing the clinical and radiological features of 57 affected individuals from 30 unrelated families with biallelic MED27 variants. Using exome sequencing and extensive international genetic data sharing, 39 unpublished affected individuals from 18 independent families with biallelic missense variants in MED27 have been identified (29 females, mean age at last follow-up 17 ± 12.4 years, range 0.1-45). Follow-up and hitherto unreported clinical features were obtained from the published 12 families. Brain MRI scans from 34 cases were reviewed. MED27-related disease manifests as a broad phenotypic continuum ranging from developmental and epileptic-dyskinetic encephalopathy to variable neurodevelopmental disorder with movement abnormalities. It is characterized by mild to profound global developmental delay/intellectual disability (100%), bilateral cataracts (89%), infantile hypotonia (74%), microcephaly (62%), gait ataxia (63%), dystonia (61%), variably combined with epilepsy (50%), limb spasticity (51%), facial dysmorphism (38%) and death before reaching adulthood (16%). Brain MRI revealed cerebellar atrophy (100%), white matter volume loss (76.4%), pontine hypoplasia (47.2%) and basal ganglia atrophy with signal alterations (44.4%). Previously unreported 39 affected individuals had seven homozygous pathogenic missense MED27 variants, five of which were recurrent. An emerging genotype-phenotype correlation was observed. This study provides a comprehensive clinical-radiological description of MED27-related disease, establishes genotype-phenotype and clinical-radiological correlations and suggests a differential diagnosis with syndromes of cerebello-lental neurodegeneration and other subtypes of 'neuro-MEDopathies'.
Insights
Biallelic variants in MED27 cause a neurodevelopmental disorder with diverse symptoms including intellectual disability, cataracts, and movement abnormalities. This study details the clinical and radiological features in 57 individuals, establishing genotype-phenotype correlations.
Area of Science:
- Genetics and Molecular Biology
- Neuroscience
- Medical Genetics
Background:
- MED27 is a key subunit of the Mediator complex, crucial for transcriptional regulation.
- Biallelic MED27 variants are implicated in a rare autosomal recessive neurodevelopmental disorder.
- Previous reports suggest associations with spasticity, cataracts, and cerebellar hypoplasia.
Purpose of the Study:
- To comprehensively delineate the clinical and radiological spectrum of MED27-related disease.
- To identify and characterize novel biallelic MED27 variants and affected individuals.
- To establish genotype-phenotype and clinical-radiological correlations in this disorder.
Main Methods:
- Exome sequencing was employed to identify MED27 variants in affected individuals.
- International genetic data sharing facilitated the identification of 39 new cases.
- Clinical data review and brain MRI analysis were performed on 57 individuals from 30 families.
Main Results:
- MED27-related disease presents a continuum from developmental epileptic-dyskinetic encephalopathy to neurodevelopmental disorder with movement abnormalities.
- Key features include global developmental delay/intellectual disability (100%), cataracts (89%), hypotonia (74%), microcephaly (62%), ataxia (63%), and dystonia (61%).
- Brain MRI consistently showed cerebellar atrophy (100%), white matter loss (76.4%), pontine hypoplasia (47.2%), and basal ganglia abnormalities (44.4%).
Conclusions:
- This study provides an extensive clinical-radiological description of MED27-related disease.
- Emerging genotype-phenotype correlations are observed, aiding in diagnosis and understanding.
- MED27-related disease should be considered in the differential diagnosis of cerebello-lental neurodegeneration syndromes.
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