Phenotype description in KIF5C gene hot-spot mutations responsible for malformations of cortical development (MCD)
Sophie Duquesne1, Marie-Cécile Nassogne2, Philippe Clapuyt3
1Center for Human Genetics, Cliniques Universitaires Saint Luc, UCLouvain, Brussels, Belgium.
Abstract:
Malformations of cortical development (MCD) represent a large group of brain cortical anomalies characterized by distinctive MRI findings. This 'radiologically-based' classification required re evaluation over time on identified underlying mechanisms (cytogenetic and/or molecular). The understanding of genotype findings (nature of cytogenetic/molecular mutation, cellular pathways consequences, timing, …) draw line of evidence on these distinctive group of conditions whereas sometimes precise and constant recurrent genotype/phenotype correlation may not be present. The clinical diagnosis of MCD is often difficult due to variability and rarity of individual types of malformations. Recent studies have established a relationship between lissencephaly and pathogenic variants in genes involved in the kinesin/tubulin pathways, as the KIF5C gene. Pathogenic variants in the KIF5C gene are a more recently discovered cause of severe developmental delay with epilepsy, characterized by specific malformation of cortical development such as pachygyria. Only seven children have been described to date. We report the natural history of a sixteen years old patient identified carrier of a KIF5C gene mutation who developed infantile epilepsy. We then gather phenotype description and molecular results of all reported patients so far in order to better define this entity.
Insights
Malformations of cortical development (MCD) are brain anomalies diagnosed via MRI. KIF5C gene mutations cause severe developmental delay and epilepsy, with pachygyria observed in affected children.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Malformations of cortical development (MCD) are a diverse group of brain anomalies diagnosed using MRI.
- Classification of MCD requires ongoing reevaluation based on cytogenetic and molecular mechanisms.
- Understanding genotype-phenotype correlations is crucial, though often challenging due to variability and rarity.
Observation:
- Recent research links lissencephaly to pathogenic variants in kinesin/tubulin pathway genes, including KIF5C.
- KIF5C gene mutations are an emerging cause of severe developmental delay and epilepsy, associated with pachygyria.
- Only seven pediatric cases of KIF5C-related disorders have been previously documented.
Findings:
- This study details the natural history of a 16-year-old patient with a KIF5C gene mutation and infantile epilepsy.
- Phenotypic and molecular data from all reported KIF5C mutation cases were compiled.
- The compilation aims to better delineate the spectrum of KIF5C-related malformations of cortical development.
Implications:
- This work contributes to a refined understanding of KIF5C-related disorders.
- Improved definition of this rare condition aids in diagnosis and clinical management.
- Further research into KIF5C's role in neurodevelopment is warranted.
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