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The phenotypic spectrum of X-linked, infantile onset ALG13-related developmental and epileptic encephalopathy
Alexandre N Datta1, Nadia Bahi-Buisson2, Thierry Bienvenu3
1Pediatric Neurology and Developmental Medicine Department, University Children's Hospital, University of Basel, Basel, Switzerland.
Insights
Asparagine-linked glycosylation 13 (ALG13) deficiencies cause developmental and epileptic encephalopathy (DEE), often presenting as West syndrome in females. The common p.(Asn107Ser) variant leads to severe developmental delay and pharmacoresistant epilepsy.
Area of Science:
- Genetics
- Neurology
- Biochemistry
Background:
- Asparagine-linked glycosylation 13 (ALG13) deficiencies are linked to developmental and epileptic encephalopathy (DEE).
- The recurrent ALG13 de novo variant, p.(Asn107Ser), is frequently observed in affected individuals, predominantly females.
- Normal transferrin electrophoresis is typical in cases with the p.(Asn107Ser) variant.
Purpose of the Study:
- To delineate the phenotypic spectrum of ALG13 deficiencies.
- To characterize individuals with the common p.(Asn107Ser) variant and other pathogenic ALG13 variants.
- To provide a comprehensive overview of clinical manifestations and neurodevelopmental outcomes.
Main Methods:
- Phenotypic analysis of 38 individuals (37 girls, 1 boy) with the p.(Asn107Ser) variant.
- Inclusion of 16 novel and 22 previously published cases.
- Phenotypic reporting of three individuals with other likely pathogenic ALG13 variants.
Main Results:
- Pharmacoresistant epilepsy, often with epileptic spasms starting in infancy, was common.
- Severe to profound developmental delay, limited ambulation, and absent purposeful hand use were characteristic.
- Hand stereotypies, dyskinetic movements, poor verbal skills, and impaired eye contact were frequently observed.
Conclusions:
- X-linked ALG13-related DEE typically presents as West syndrome with significant developmental delay.
- The recurrent p.(Asn107Ser) variant is a primary cause of this condition.
- Further functional studies are needed to confirm the association with congenital disorders of glycosylation.
Objective:
Asparagine-linked glycosylation 13 (ALG13) deficiencies have been repeatedly described in the literature with the clinical phenotype of a developmental and epileptic encephalopathy (DEE). Most cases were females carrying the recurrent ALG13 de novo variant, p.(Asn107Ser), with normal transferrin electrophoresis.
Methods:
We delineate the phenotypic spectrum of 38 individuals, 37 girls and one boy, 16 of them novel and 22 published, with the most common pathogenic ALG13 variant p.(Asn107Ser) and additionally report the phenotype of three individuals carrying other likely pathogenic ALG13 variants.
Results:
The phenotypic spectrum often comprised pharmacoresistant epilepsy with epileptic spasms, mostly with onset within the first 6 months of life and with spasm persistence in one-half of the cases. Tonic seizures were the most prevalent additional seizure type. Electroencephalography showed hypsarrhythmia and at a later stage of the disease in one-third of all cases paroxysms of fast activity with electrodecrement. ALG13-related DEE was usually associated with severe to profound developmental delay; ambulation was acquired by one-third of the cases, whereas purposeful hand use was sparse or completely absent. Hand stereotypies and dyskinetic movements including dystonia or choreoathetosis were relatively frequent. Verbal communication skills were absent or poor, and eye contact and pursuit were often impaired.
Significance:
X-linked ALG13-related DEE usually manifests as West syndrome with severe to profound developmental delay. It is predominantly caused by the recurrent de novo missense variant p.(Asn107Ser). Comprehensive functional studies will be able to prove or disprove an association with congenital disorder of glycosylation.
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