Related Experiment Video
Updated: May 21, 2026

Identification and Classification of Position-specific GABAA Receptor Subunit Missense Variants for Their Role In Hippocampal Pyramidal Neurons
Published on: June 6, 2025
Variability of phenotype in two sisters with pyridoxine dependent epilepsy
Majid Alfadhel1, Sandra Sirrs, Paula J Waters
1Department of Paediatrics, King Saud bin Abdulaziz University for Health Sciences, King Abdulaziz Medical City, Riyadh, Saudi Arabia. dralfadhel@yahoo.com
Insights
Pyridoxine dependent epilepsy (PDE), caused by ALDH7A1 gene mutations, presents with varied intellectual disability even within families. Early diagnosis and treatment are crucial for managing this rare genetic epilepsy.
Area of Science:
- Genetics
- Neurology
- Biochemistry
Background:
- Pyridoxine dependent epilepsy (PDE) is a neonatal epileptic encephalopathy responsive to vitamin B6.
- Autosomal recessive deficiency in Antiquitin (ALDH7A1), impacting lysine catabolism, underlies PDE.
- ALDH7A1 gene mutations are the identified cause of this rare condition.
Observation:
- Two sisters with PDE, confirmed by elevated alpha aminoadipic-6-semialdehyde (α-AASA) and ALDH7A1 mutations, presented with neonatal seizures.
- Epilepsy was controlled with medication, but both experienced developmental and speech delays.
- Despite identical genetic backgrounds and early pyridoxine treatment, adult intellectual disability varied significantly between sisters.
Findings:
- Intellectual disability severity in PDE can differ substantially among affected siblings.
- Adults with a history of childhood seizures should be evaluated for potential PDE.
- Delayed diagnosis of PDE is possible, even in adulthood.
Implications:
- Highlights the phenotypic variability of Pyridoxine dependent epilepsy.
- Stresses the importance of considering PDE in the differential diagnosis of adult seizure disorders with childhood onset.
- Emphasizes the need for comprehensive neurological and developmental assessments in PDE patients beyond seizure control.
Background:
Pyridoxine dependent epilepsy (PDE) is characterized by neonatal epileptic encepahalopathy responsive to pharmacological doses of vitamin B6. Recently an autosomal recessive deficiency in Antiquitin (ALDH7A1), a gene involved in the catabolism of lysine has been identified as the underlying cause.
Case Report:
In 21 and 23 year-old sisters, who had presented with neonatal / early infantile onset seizures, PDE was confirmed by elevated urinary alpha aminoadipic- 6- semialdehyde (α-AASA) excretion and compound heterozygosity for two known ALDH7A1 missense mutations. Although epilepsy was well controlled upon treatment with pyridoxine, thiamine, phenytoin and carbamazepine since early infancy, both had developmental delay with prominent speech delay as children. As adults, despite the same genetic background and early treatment with pyridoxine, their degree of intellectual disability (ID) differed widely. While the older sister's cognitive functions were in the moderate ID range and she was not able to live unattended, the younger sister had only mild ID and was able to live independently.
Conclusion:
Although seizures are a defining feature of PDE, other disease manifestations can vary widely even within the same family. Adult neurologists should be aware that the diagnosis of PDE can be delayed and PDE should be considered in the differential diagnosis of adults with seizure disorders dating from childhood.
Related Concept Videos
Epistasis
Pedigree Analysis
Pleiotropy
Epistasis Analysis
Pharmacogenetic Phenotypes: Alterations in Pharmacokinetics, Drug Targets and Biologic Milieu
Genetic Lingo

