MED13 mutation: A novel cause of developmental and epileptic encephalopathy with infantile spasms
Marina Trivisano1, Angela De Dominicis2, Alessia Micalizzi3
1Rare and Complex Epilepsy Unit, Department of Neuroscience, Bambino Gesù Children's Hospital, IRCCS, Full Member of European Reference Network EpiCARE, Rome, Italy.
Insights
A novel MED13 gene mutation caused a rare form of early-onset epilepsy and developmental delay in a young boy. This finding expands the known spectrum of MED13-related neurodevelopmental disorders.
Area of Science:
- Genetics
- Neurodevelopmental Disorders
- Epilepsy
Background:
- Mutations in the MED13 gene are linked to diverse neurodevelopmental disorders.
- These disorders often present with intellectual disability, autism spectrum disorder, ADHD, and physical abnormalities.
Observation:
- A 24-month-old boy presented with early-onset, drug-resistant epilepsy, including infantile spasms, developmental delay, microcephaly, and dysmorphic features.
- Trio-based whole exome sequencing identified a novel de novo heterozygous missense variant (c.2501A>G) in the MED13 gene.
- Literature review revealed epilepsy is uncommon in MED13-related disorders, with only one prior case reporting generalized epilepsy.
Findings:
- The identified MED13 variant is associated with a severe phenotype of developmental and epileptic encephalopathy with infantile spasms.
- This contrasts with the previously reported generalized epilepsy with myoclonic-atonic seizures in MED13-related disorders.
- Microcephaly, developmental delay, hypotonia, corpus callosum abnormalities, deafness, and retinal atrophy are common features in previously described cases.
Implications:
- This case broadens the understanding of the genetic causes of infantile spasms.
- It expands the clinical spectrum of MED13-related disorders to include early-onset developmental and epileptic encephalopathy.
- Further research into MED13 variants is crucial for improved diagnosis and management of neurodevelopmental epilepsy syndromes.
Purpose:
Mutations in the MED13 gene are reported in the literature in association with clinically variable, neurodevelopmental disorders, which are characterized by mild-to-severe intellectual disability, autism spectrum disorder, attention deficit/hyperactivity disorder, epilepsy, ocular or skeletal abnormalities, congenital cardiac defects, and facial dysmorphisms. Here, we report a patient with an epileptic phenotype carrying a novel missense mutation characterized by developmental and epileptic encephalopathy with infantile spasms.
Methods:
Through trio-based WES, we identified a novel de novo heterozygous missense variant c.2501A>G in the MED13 gene. We reviewed all medical charts of the present patient and reviewed all previously reported cases with pathogenic variants of MED13.
Results:
This study involves a 24-month-old boy with epilepsy onset at the age of 3 months with drug-resistant focal seizures followed by infantile spasms at the age of 10 months. He had a severe, developmental delay along with microcephaly and dysmorphic features. From a literature review, it emerged that epilepsy is described in only one out of nineteen of previously reported patients with a phenotype of generalized, drug-resistant epilepsy with myoclonic-atonic seizures. Microcephaly, developmental delay, hypotonia, corpus callosum abnormalities, deafness, and retinal atrophy were common features in the previously described cases.
Conclusion:
This case expands the genetic landscape of infantile spasms as well as the phenotype of MED13-related disorders adding the electroclinical features of early-onset developmental and epileptic encephalopathy with infantile spasms to the previously described, generalized epilepsy with myoclonic-atonic seizures.
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