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Complex mosaic CDKL5 deletion with two distinct mutant alleles in a 4-year-old girl
Nadia Boutry-Kryza1, Dorothée Ville, Audrey Labalme
1Department of Molecular Genetics, Lyon University Hospital, Lyon, France; Claude Bernard Lyon I University, Lyon, France; CRNL, CNRS UMR 5292, INSERM U1028, Lyon, France.
Insights
This study reports a rare case of mosaicism in the CDKL5 gene, involving two distinct deletions in a single patient. This highlights challenges in diagnosing complex genetic mutations causing early epileptic encephalopathy.
Area of Science:
- Genetics
- Molecular Biology
- Neurology
Background:
- Mutations in the CDKL5 gene are a primary cause of early epileptic encephalopathy, characterized by early-onset refractory epilepsy and severe psychomotor delay.
- The clinical presentation often overlaps with Rett syndrome, posing diagnostic challenges.
Observation:
- A 4-year-old girl with mosaicism for CDKL5 exonic deletion presented with infantile spasms and a phenotype consistent with CDKL5-related disorders.
- Initial analyses suggested a deletion of exons 17 and 18, but further investigation revealed two distinct deletions: exon 18 from one allele and exon 17 from the other.
Findings:
- Custom array-comparative genomic hybridization (array-CGH) confirmed the presence of two separate deletions within the CDKL5 gene.
- A Fork Stalling and Template Switching (FoSTeS) mechanism was proposed to explain the co-occurrence of these two distinct deletion events.
Implications:
- This case underscores the complexity of detecting genetic abnormalities, especially in mosaic states involving multiple mutational events within a single gene.
- Understanding novel mechanisms like FoSTeS is crucial for accurate diagnosis and potential therapeutic strategies for CDKL5-related disorders.
Abstract:
Mutations of the CDKL5 gene cause early epileptic encephalopathy. Patients manifest refractory epilepsy, beginning before the age of 3 months, which is associated with severe psychomotor delay and features that overlap with Rett syndrome. We report here a patient with mosaicism for CDKL5 exonic deletion, with the presence of two mutant alleles. The affected 4-year-old girl presented with infantile spasms, beginning at the age of 9 months, but subsequent progression of the disease was consistent with the classical CDKL5-related phenotype. A deletion of exons 17 and 18 was suspected on the basis of Multiplex Ligation Probe Amplification analysis, but unexpected results for cDNA analysis, which showed the presence of an abnormal transcript with the deletion of exon 18 only, led us to suspect that two distinct events might have occurred. We used custom array-CGH to determine the size and breakpoints of these deletions. Exon 18 was deleted from one of the abnormal alleles, and exon 17 was deleted from the other. A Fork Stalling and Template Switching (FoSTeS) mechanism was proposed to explain the two events, given the presence of regions of microhomology at the breakpoints. We propose here an original involvement of the FoSTeS mechanism to explain the co-occurrence of these two events in the CDKL5 gene in a single patient. This patient highlights the difficulties involved in the detection of such abnormalities, particularly when they occur in a mosaic state and involve two distinct mutational events in a single gene.
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