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Published on: November 1, 2024
Site-specific abnormalities in the visual system of a mouse model of CDKL5 deficiency disorder
Leonardo Lupori1,2, Giulia Sagona2,3,4, Claudia Fuchs5
1BIO@SNS Laboratory, Scuola Normale Superiore, Via Moruzzi 1, Pisa 56124, Italy.
Abstract:
CDKL5 deficiency disorder (CDD) is a neurodevelopmental disorder characterized by a severe global developmental delay and early-onset seizures. Notably, patients show distinctive visual abnormalities often clinically diagnosed as cortical visual impairment. However, the involvement of cerebral cortical dysfunctions in the origin of the symptoms is poorly understood. CDD mouse models also display visual deficits, and cortical visual responses can be used as a robust biomarker in CDKL5 mutant mice. A deeper understanding of the circuits underlying the described visual deficits is essential for directing preclinical research and translational approaches. Here, we addressed this question in two ways: first, we performed an in-depth morphological analysis of the visual pathway, from the retina to the primary visual cortex (V1), of CDKL5 null mice. We found that the lack of CDKL5 produced no alteration in the organization of retinal circuits. Conversely, CDKL5 mutants showed reduced density and altered morphology of spines and decreased excitatory synapse marker PSD95 in the dorsal lateral geniculate nucleus and in V1. An increase in the inhibitory marker VGAT was selectively present in V1. Second, using a conditional CDKL5 knockout model, we showed that selective cortical deletion of CDKL5 from excitatory cells is sufficient to produce abnormalities of visual cortical responses, demonstrating that the normal function of cortical circuits is dependent on CDKL5. Intriguingly, these deficits were associated with morphological alterations of V1 excitatory and inhibitory synaptic contacts. In summary, this work proposes cortical circuit structure and function as a critically important target for studying CDD.
Insights
CDKL5 deficiency disorder (CDD) causes visual impairments due to altered cortical circuits. This study reveals CDKL5 is crucial for normal visual cortex development and function.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- CDKL5 deficiency disorder (CDD) is a severe neurodevelopmental condition.
- Patients exhibit significant visual abnormalities, often diagnosed as cortical visual impairment.
- The precise role of cerebral cortical dysfunction in CDD symptoms remains unclear.
Purpose of the Study:
- To investigate the involvement of visual cortical circuits in CDD.
- To analyze the morphological and functional impact of CDKL5 loss on the visual pathway.
- To identify CDKL5's role in synaptic organization within the visual cortex.
Main Methods:
- Morphological analysis of the visual pathway (retina to V1) in CDKL5 null mice.
- Examination of synaptic density, spine morphology, and expression of synaptic markers (PSD95, VGAT).
- Utilized a conditional CDKL5 knockout model to assess the impact of cortical CDKL5 deletion in excitatory cells.
Main Results:
- No alterations in retinal circuit organization were observed.
- CDKL5 deficiency led to reduced spine density and altered morphology, with decreased PSD95 and increased VGAT in the dorsal lateral geniculate nucleus and V1.
- Selective cortical deletion of CDKL5 in excitatory cells caused visual cortical response abnormalities and synaptic alterations.
Conclusions:
- Cortical circuit structure and function are critically implicated in CDKL5 deficiency disorder.
- CDKL5 is essential for normal visual cortical development and synaptic organization.
- Findings highlight the visual cortex as a key target for understanding and potentially treating CDD.
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