Journal of Neuroscience · 2001 · 87 citations · 44 references
ApoptosisCdk5 ExpressionCell DeathCdk5 Null PhenotypeGliomaSynaptic SignalingCellular PhysiologyNeuroinflammationNeurologyCell SignalingNeuroprotectionCell BiologySignal TransductionCdk5 Null MiceNeuroscienceMolecular NeurobiologyMedicineNeural Stem CellActivity Is Critical
Cyclin-dependent kinase 5 (Cdk5) null mice exhibit a unique phenotype characterized by perinatal mortality, disrupted cerebral cortical layering attributable to abnormal neuronal migration, lack of cerebellar foliation, and chromatolytic changes of neurons in the brainstem and the spinal cord. Because Cdk5 is expressed in both neurons and astrocytes, it has been unclear whether this phenotype is primarily attributable to defects in neurons or in astrocytes. Herein we report reconstitution of Cdk5 expression in neurons in Cdk5 null mice and its effect on the null phenotype. Unlike the Cdk5 null mice, the reconstituted Cdk5 null mice that express the Cdk5 transgene under the p35 promoter (TgKO mice) were viable and fertile. Because Cdk5 expression is mainly limited to neurons in these mice and rescues the defects in the nervous system of the Cdk5 null phenotype, it clearly demonstrates that Cdk5 activity is necessary for normal development and survival of p35-expressing neurons.
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A family of human cdc2-related protein kinases.
Matthew Meyerson, G H Enders, Chia‐Ling Wu et al. · The EMBO Journal · 1992 · 920 citations · Full text
p35 is a neural-specific regulatory subunit of cyclin-dependent kinase 5
Li‐Huei Tsai, Ivana Delalle, Verne S. Caviness et al. · Nature · 1994 · 915 citations
Molecular Neuroscience, Signal Transduction, Molecular Pathway +11
Toshio Ohshima, Jerrold M. Ward, C G Huh et al. · Proceedings of the National Academy of Sciences · 1996 · 893 citations · Full text