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Epilepsy-Related CDKL5 Deficiency Slows Synaptic Vesicle Endocytosis in Central Nerve Terminals
Christiana Kontaxi1,2,3, Daniela Ivanova1,2,3, Elizabeth C Davenport1,2,3
1Centre for Discovery Brain Sciences, University of Edinburgh, Edinburgh, EH8 9XD, United Kingdom.
Abstract:
Cyclin-dependent kinase-like 5 (CDKL5) deficiency disorder (CDD) is a severe early-onset epileptic encephalopathy resulting mainly from de novo mutations in the X-linked CDKL5 gene. To determine whether loss of presynaptic CDKL5 function contributes to CDD, we examined synaptic vesicle (SV) recycling in primary hippocampal neurons generated from Cdkl5 knockout rat males. Using a genetically encoded reporter, we revealed that CDKL5 is selectively required for efficient SV endocytosis. We showed that CDKL5 kinase activity is both necessary and sufficient for optimal SV endocytosis, since kinase-inactive mutations failed to correct endocytosis in Cdkl5 knockout neurons, whereas the isolated CDKL5 kinase domain fully restored SV endocytosis kinetics. Finally, we demonstrated that CDKL5-mediated phosphorylation of amphiphysin 1, a putative presynaptic target, is not required for CDKL5-dependent control of SV endocytosis. Overall, our findings reveal a key presynaptic role for CDKL5 kinase activity and enhance our insight into how its dysfunction may culminate in CDD.SIGNIFICANCE STATEMENT Loss of cyclin-dependent kinase like 5 (CDKL5) function is a leading cause of monogenic childhood epileptic encephalopathy. However, information regarding its biological role is scarce. In this study, we reveal a selective presynaptic role for CDKL5 in synaptic vesicle endocytosis and that its protein kinase activity is both necessary and sufficient for this role. The isolated protein kinase domain is sufficient to correct this loss of function, which may facilitate future gene therapy strategies if presynaptic dysfunction is proven to be central to the disorder. It also reveals that a CDKL5-specific substrate is located at the presynapse, the phosphorylation of which is required for optimal SV endocytosis.
Insights
Cyclin-dependent kinase-like 5 (CDKL5) deficiency disorder involves loss of presynaptic CDKL5 function impacting synaptic vesicle endocytosis. CDKL5 kinase activity is essential for this process, offering potential therapeutic insights.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Cyclin-dependent kinase-like 5 (CDKL5) deficiency disorder (CDD) is a severe genetic epilepsy.
- The precise biological role of CDKL5, particularly at the synapse, remains largely unknown.
Purpose of the Study:
- To investigate the role of presynaptic CDKL5 in synaptic vesicle (SV) recycling.
- To determine if CDKL5 kinase activity is essential for SV endocytosis.
Main Methods:
- Primary hippocampal neurons from Cdkl5 knockout rats were utilized.
- A genetically encoded reporter system was employed to monitor SV endocytosis.
- Kinase-inactive CDKL5 mutants and the isolated kinase domain were tested.
Main Results:
- CDKL5 is selectively required for efficient synaptic vesicle endocytosis.
- CDKL5 kinase activity is both necessary and sufficient for optimal SV endocytosis.
- Phosphorylation of amphiphysin 1 is not required for CDKL5-dependent SV endocytosis.
Conclusions:
- CDKL5 plays a critical presynaptic role in regulating synaptic vesicle endocytosis via its kinase activity.
- These findings enhance understanding of CDD pathogenesis and suggest potential therapeutic avenues targeting presynaptic dysfunction.
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