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CDKL5 deficiency causes epileptic seizures independent of cellular mosaicism
Satoru Takahashi1, Ryo Takeguchi1, Ryosuke Tanaka1
1Department of Pediatrics, Asahikawa Medical University, Asahikawa 078-8510, Japan.
Objective:
In a study using a mouse model of CDKL5 deficiency disorder (CDD), seizures are specific to female mice heterozygous for Cdkl5 mutations and not observed in hemizygous knockout males or homozygous knockout females. The aim of this study was to examine whether the clinical phenotype of patients with CDD can be impacted by the type of genetic variant.
Methods:
Eleven CDD patients (six females and five males) were included in this study. The molecular diagnosis of hemizygous male patients was performed using digital PCR and their clinical phenotypes were compared with those of patients with mosaic or heterozygous CDKL5 variants. The severity of clinical phenotypes was graded by using CDKL5 Developmental Score and the adapted version of the CDKL5 Clinical Severity Assessment. The effect of cellular mosaicism on the severity of CDD was studied by comparing the clinical characteristics and comorbidities between individuals with hemizygous and mosaic or heterozygous CDKL5 variants.
Results:
One of the five male patients was mosaic for the CDKL5 variant. All patients developed seizures irrespective of their genetic status of the pathogenic variant. However, cellular mosaicism of CDKL5 deficiency was associated with lesser severity of other comorbidities such as feeding, respiratory, and visual functional impairments.
Significance:
This study provided evidence that cellular mosaicism of CDKL5 deficiency was not necessarily required for developing epilepsy. CDD patients not only exhibited clinical features of epilepsy but also exhibited the developmental consequences arising directly from the effect of the CDKL5 pathogenic variant.
Insights
Cellular mosaicism is not required for epilepsy in CDKL5 deficiency disorder (CDD). However, mosaicism may lessen the severity of other CDD-related comorbidities in patients.
Area of Science:
- Genetics
- Neurology
- Developmental Biology
Background:
- CDKL5 deficiency disorder (CDD) is a severe neurodevelopmental epilepsy.
- Mouse models suggest sex-specific seizure phenotypes in CDKL5 mutations.
- The impact of genetic variant type on human CDD phenotypes requires further investigation.
Purpose of the Study:
- To investigate the influence of different genetic variant types on the clinical presentation of CDKL5 deficiency disorder in patients.
- To compare the clinical phenotypes of CDD patients with hemizygous, mosaic, or heterozygous CDKL5 variants.
Main Methods:
- Eleven CDD patients (6 female, 5 male) were analyzed.
- Molecular diagnosis utilized digital PCR for hemizygous males.
- Clinical severity was assessed using the CDKL5 Developmental Score and an adapted Clinical Severity Assessment.
Main Results:
- All patients experienced seizures, regardless of genetic variant status.
- Cellular mosaicism in CDKL5 deficiency correlated with reduced severity of feeding, respiratory, and visual impairments.
- One male patient presented with mosaic CDKL5 variants.
Conclusions:
- Epilepsy development in CDD does not strictly require cellular mosaicism.
- CDD patients exhibit epilepsy and developmental issues directly linked to the CDKL5 pathogenic variant.
- Cellular mosaicism may mitigate non-epileptic comorbidities in CDD.
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