Prospective study of POLG mutations presenting in children with intractable epilepsy: prevalence and clinical
Johanna Uusimaa1, Vasantha Gowda, Anthony McShane
1Nuffield Department of Obstetrics and Gynaecology, The Women's Centre, John Radcliffe Hospital, University of Oxford, Oxford, United Kingdom.
Insights
Mutations in the POLG gene are a significant cause of childhood intractable epilepsy. Genetic testing is crucial for diagnosis and to avoid dangerous VPA treatment due to liver failure risk.
Area of Science:
- Genetics
- Neurology
- Mitochondrial Diseases
Background:
- Intractable epilepsy in children often has an unknown cause.
- The POLG gene encodes mitochondrial DNA polymerase gamma, crucial for mitochondrial DNA maintenance.
- Mutations in POLG can lead to various neurological and metabolic disorders.
Purpose of the Study:
- To determine the frequency of common POLG gene mutations in children with intractable epilepsy.
- To describe the clinical characteristics of these patients.
- To evaluate the diagnostic and therapeutic implications of identifying POLG mutations.
Main Methods:
- Prospective, population-based study of children with unexplained intractable epilepsy.
- Analysis of blood DNA for three common POLG mutations, followed by full gene sequencing if mutations were found.
- Retrospective review of patients with identified POLG mutations and collection of clinical data.
Main Results:
- 2.3% of patients (5/213) in the prospective cohort had common POLG mutations.
- An additional three patients were identified retrospectively, totaling eight patients.
- Seven patients presented with elevated CSF lactate or brain MRI abnormalities; two developed fatal liver failure, particularly with VPA treatment.
Conclusions:
- POLG mutations are a key cause of early-onset, nonsyndromic intractable epilepsy with diverse symptoms, including autistic features.
- Genetic testing for POLG mutations is vital for accurate diagnosis, counseling, and treatment decisions due to VPA-induced liver failure risk.
- Recommended testing for intractable seizures with CSF lactate elevation or specific MRI findings, especially with progressive disease or Alpers-like manifestations.
Purpose:
To assess the frequency and clinical features of childhood-onset intractable epilepsy caused by the most common mutations in the POLG gene, which encodes the catalytic subunit of mitochondrial DNA polymerase gamma.
Methods:
Children presenting with nonsyndromic intractable epilepsy of unknown etiology but without documented liver dysfunction at presentation were eligible for this prospective, population-based study. Blood samples were analyzed for the three most common POLG mutations. If any of the three tested mutations were found, all the exons and the exon-intron boundaries of the POLG gene were sequenced. In addition, we retrospectively reviewed the notes of patients presenting with intractable epilepsy in which we had found POLG mutations. All available clinical data were collected by questionnaire and by reviewing the medical records.
Key Findings:
We analyzed 213 blood DNA samples from patients fulfilling the inclusion criteria of the prospective study. Among these, five patients (2.3%) were found with one of the three common POLG mutations as homozygous or compound heterozygous states. In addition, three patients were retrospectively identified. Seven of the eight patients had either raised cerebrospinal fluid (CSF) lactate (n = 3) or brain magnetic resonance imaging (MRI) changes (n = 4) at presentation with intractable epilepsy. Three patients later developed liver dysfunction, progressing to fatal liver failure in two without previous treatment with sodium valproate (VPA). Furthermore, it is worth mentioning that one patient presented first with an autism spectrum disorder before seizures emerged.
Significance:
Mutations in POLG are an important cause of early and juvenile onset nonsyndromic intractable epilepsy with highly variable associated manifestations including autistic features. This study emphasizes that genetic testing for POLG mutations in patients with nonsyndromic intractable epilepsies is very important for clinical diagnostics, genetic counseling, and treatment decisions because of the increased risk for VPA-induced liver failure in patients with POLG mutations. We recommend POLG gene testing for patients with intractable seizures and at least one elevated CSF lactate or suggestive brain MRI changes (predominantly abnormal T2 -weighted thalamic signal) with or without status epilepticus, epilepsia partialis continua, or liver manifestations typical for Alpers disease, especially when the disease course is progressive.
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