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A Piglet Model of Neonatal Hypoxic-Ischemic Encephalopathy
Published on: May 16, 2015
PLPBP mutations cause variable phenotypes of developmental and epileptic encephalopathy
Hiroshi Shiraku1,2, Mitsuko Nakashima3,4, Saoko Takeshita5
1Department of Pediatrics JA Toride General Hospital Toride Japan.
Insights
Novel variants in the PLPBP gene cause vitamin B6-dependent epilepsies, leading to developmental and epileptic encephalopathy. Early pyridoxine treatment is crucial for improving neurologic outcomes in affected infants.
Area of Science:
- Genetics
- Neurology
- Biochemistry
Background:
- Vitamin B6-dependent epilepsies are treatable genetic disorders.
- Variants in ALDH7A1 and PNPO are known causes.
- Recently, PLPBP (PROSC) variants were identified as a novel cause.
Purpose of the Study:
- To further characterize the phenotype associated with PLPBP gene mutations.
- To delineate the clinical presentation and outcomes in patients with PLPBP variants.
Main Methods:
- Identified 4 unrelated patients with PLPBP variants (3 novel) from a cohort of 700.
- Collected and analyzed clinical information for each patient.
Main Results:
- Seizure onset varied from birth to 3 months, with generalized tonic-clonic seizures being common.
- EEG findings were variable; all patients exhibited some intellectual disability despite early vitamin B6 treatment.
- Mutation type appears to influence seizure severity and prognosis.
Conclusions:
- PLPBP variants are a significant cause of developmental and epileptic encephalopathy, even beyond the neonatal period.
- Early diagnosis and treatment with pyridoxine or pyridoxal phosphate are essential for better neurologic outcomes.
- This highlights the importance of genetic testing for unexplained early-onset epilepsy.
Objective:
Vitamin B6-dependent epilepsies are treatable disorders caused by variants in several genes, such as ALDH7A1,PNPO, and others. Recently, biallelic variants in PLPBP, formerly known as PROSC, were identified as a novel cause of vitamin B6-dependent epilepsies. Our objective was to further delineate the phenotype of PLPBP mutation.
Methods:
We identified 4 unrelated patients harboring a total of 4 variants in PLPBP, including 3 novel variants, in a cohort of 700 patients with developmental and epileptic encephalopathies. Clinical information in each case was collected.
Results:
Each patient had a different clinical course of epilepsy, with seizure onset from the first day of life to 3 months of age. Generalized tonic-clonic seizures were commonly noted. Myoclonic seizures or focal seizures were also observed in 2 patients. Interictal electroencephalography showed variable findings, such as suppression burst, focal or multifocal discharges, and diffuse slow activity. Unlike previous reports, all the patients had some degree of intellectual disability, although some of them had received early treatment with vitamin B6, suggesting that different mutation types influence the severity and outcome of the seizures.
Significance:
PLPBP variants should be regarded as among the causative genes of developmental and epileptic encephalopathy, even when it occurs after the neonatal period. Early diagnosis and proper treatment with pyridoxine or pyridoxal phosphate is essential to improve the neurologic prognosis in neonates or young children with poorly controlled seizures.
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