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CDKL5, a protein associated with rett syndrome, regulates neuronal morphogenesis via Rac1 signaling
Qian Chen1, Yong-Chuan Zhu, Jing Yu
1Institute of Neuroscience and State Key Laboratory of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, People's Republic of China.
Abstract:
Mutations in cyclin-dependent kinase-like 5 (CDKL5), also known as serine/threonine kinase 9 (STK9), have been identified in patients with Rett syndrome (RTT) and X-linked infantile spasm. However, the function of CDKL5 in the brain remains unknown. Here, we report that CDKL5 is a critical regulator of neuronal morphogenesis. We identified a neuron-specific splicing variant of CDKL5 whose expression was markedly induced during postnatal development of the rat brain. Downregulating CDKL5 by RNA interference (RNAi) in cultured cortical neurons inhibited neurite growth and dendritic arborization, whereas overexpressing CDKL5 had opposite effects. Furthermore, knocking down CDKL5 in the rat brain by in utero electroporation resulted in delayed neuronal migration, and severely impaired dendritic arborization. In contrast to its proposed function in the nucleus, we found that CDKL5 regulated dendrite development through a cytoplasmic mechanism. In fibroblasts and in neurons, CDKL5 colocalized and formed a protein complex with Rac1, a critical regulator of actin remodeling and neuronal morphogenesis. Overexpression of Rac1 prevented the inhibition of dendrite growth caused by CDKL5 knockdown, and the growth-promoting effect of ectopically expressed CDKL5 on dendrites was abolished by coexpressing a dominant-negative form of Rac1. Moreover, CDKL5 was required for brain-derived neurotrophic factor (BDNF)-induced activation of Rac1. Together, these results demonstrate a critical role of CDKL5 in neuronal morphogenesis and identify a Rho GTPase signaling pathway which may contribute to CDKL5-related disorders.
Insights
Cyclin-dependent kinase-like 5 (CDKL5) regulates neuronal development by interacting with Rac1 in the cytoplasm. This finding sheds light on CDKL5-related disorders and neuronal morphogenesis.
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Background:
- Mutations in cyclin-dependent kinase-like 5 (CDKL5) are linked to Rett syndrome and X-linked infantile spasms.
- The precise function of CDKL5 in brain development remains largely unknown.
Purpose of the Study:
- To elucidate the role of CDKL5 in neuronal morphogenesis.
- To investigate the molecular mechanisms underlying CDKL5's function in the brain.
Main Methods:
- Utilized RNA interference (RNAi) and overexpression in cultured neurons.
- Employed in utero electroporation in rat brains.
- Investigated protein-protein interactions using co-localization and complex formation assays.
- Assessed the impact on neuronal migration and dendritic arborization.
Main Results:
- CDKL5 is a neuron-specific splicing variant upregulated during postnatal brain development.
- Downregulating CDKL5 inhibited neurite growth and dendritic arborization; overexpression had opposite effects.
- CDKL5 interacts with Rac1 in the cytoplasm, regulating actin remodeling and dendrite development.
- CDKL5 is essential for BDNF-induced Rac1 activation.
Conclusions:
- CDKL5 is a critical regulator of neuronal morphogenesis, acting through a cytoplasmic mechanism involving Rac1.
- This study identifies a novel Rho GTPase signaling pathway implicated in CDKL5-related disorders.
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