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Determining the Likelihood of Variant Pathogenicity Using Amino Acid-level Signal-to-Noise Analysis of Genetic Variation
Published on: January 16, 2019
Pathogenic variants in KPTN gene identified by clinical whole-genome sequencing
Isabelle Thiffault1,2,3, Andrea Atherton4, Bryce A Heese4
1Center for Pediatric Genomic Medicine, Children's Mercy Hospital, Kansas City, Missouri 64108, USA.
Insights
This study identifies new KPTN gene variants in a pediatric patient with severe neurological symptoms and epilepsy. These findings expand the known spectrum of KPTN deficiency, aiding in diagnosing rare genetic disorders.
Area of Science:
- Genetics
- Neurology
- Pediatrics
Background:
- Status epilepticus is a critical neurological emergency in intensive care units, often challenging to diagnose.
- Genetic factors play a crucial role in heterogeneous neurodevelopmental disorders, necessitating precise molecular diagnostics.
Observation:
- A 9-year-old male with macrocephaly, neurodevelopmental delay, autism, and focal epilepsy presented with fatal status epilepticus.
- Clinical whole-genome sequencing was performed to investigate the unknown etiology of his complex phenotype.
Findings:
- Compound heterozygous variants in the KPTN gene (c.714_731dup and c.394 + 1G > A) were identified.
- These variants confirm a diagnosis of autosomal recessive KPTN-related disease, expanding the genotypic and phenotypic spectrum.
Implications:
- This case highlights the importance of genetic testing for diagnosing rare conditions like KPTN deficiency in critically ill children.
- Further evidence is provided for the variable severity of KPTN deficiency, aiding future clinical management and genetic counseling.
Abstract:
Status epilepticus is not rare in critically ill intensive care unit patients, but its diagnosis is often delayed or missed. The mortality for convulsive status epilepticus is dependent on the underlying aetiologies and the age of the patients and thus varies from study to study. In this context, effective molecular diagnosis in a pediatric patient with a genetically heterogeneous phenotype is essential. Homozygous or compound heterozygous variants in KPTN have been recently associated with a syndrome typified by macrocephaly, neurodevelopmental delay, and seizures. We describe a comprehensive investigation of a 9-yr-old male patient who was admitted to the intensive care unit, with focal epilepsy, static encephalopathy, autism spectrum disorder, and macrocephaly of unknown etiology, who died of status epilepticus. Clinical whole-genome sequencing revealed compound heterozygous variants in the KPTN gene. The first variant is a previously characterized 18-bp in-frame duplication (c.714_731dup) in exon 8, resulting in the protein change p.Met241_Gln246dup. The second variant, c.394 + 1G > A, affects the splice junction of exon 3. These results are consistent with a diagnosis of autosomal recessive KPTN-related disease. This is the fourth clinical report for KPTN deficiency, providing further evidence of a wider range of severity.
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