Phosphorylation process plays an important role in the structural organization of neuronal cytoskeleton. Synthesis, transport and assembly of neurofilament (NF) proteins are developmentally and spatially regulated by specific kinases that extensively phosphorylate different motifs such as Lys- Ser-Pro (KSP) repeats in the carboxyl-terminal tail domain of NF- M and NF-H. This phosphorylation stabilizes the NF network in the axon, and to affect the axonal transport and conduction velocity in the neurons. Cyclin dependent kinase-5 (Cdk5) is believed to phosphorylate KSP motifs in NF and tau protein. The later phosphorylation occurs exclusively at the same sites found in the tau protein from Alzheimer?s disease brain. Abnormal NF phosphorylation has also been associated with neuro-degenerative diseases. In order to delineate precise roles of specific kinases in neuro-degenerative process in vivo, we generated Cdk5 null mouse which exhibited abnormal corticogenesis associated with absence of cortical laminar structures and cerebellar foliation; degenrative changes in the large motor neurons in the brain stem and in the spinal cord with the abnormal accumulation of NF immunoreactivity. Subsequent analysis of Cdk5 null phenotype revealed a new cell-autonomous pathway through which Cdk5 exerts its effects on the neuronal migration and corticogenesis. Our recent studies indicate CNS-restricted role for Cdk5. The conditional knockout mice for Cdk5 were generated using Cre-plox system. These mice are grossly normal at birth, but exhibit unusual postures and movements indicating potential abnormalities in the peripheral nervous system. These mice are c

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Intramural Research (Z01)
Project #
1Z01DE000664-05
Application #
6432038
Study Section
(IR)
Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
2000
Total Cost
Indirect Cost
Name
Dental & Craniofacial Research
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Utreras, Elias; Futatsugi, Akira; Rudrabhatla, Parvathi et al. (2009) Tumor necrosis factor-alpha regulates cyclin-dependent kinase 5 activity during pain signaling through transcriptional activation of p35. J Biol Chem 284:2275-84
Utreras, Elias; Futatsugi, Akira; Pareek, Tej Kumar et al. (2009) Molecular Roles of Cdk5 in Pain Signaling. Drug Discov Today Ther Strateg 6:105-111
Nakamura, Gen; Maruyama, Hiroki; Ishii, Satoshi et al. (2008) Naked plasmid DNA-based alpha-galactosidase A gene transfer partially reduces systemic accumulation of globotriaosylceramide in Fabry mice. Mol Biotechnol 38:109-19
Saikkonen, Brenda; Pareek, Tej Kumar; Agarwal, Nitin et al. (2008) Conditional deletion of cyclin-dependent kinase 5 in primary sensory neurons leads to atypical skin lesions. Cell Cycle 7:750-3
Veeranna; Lee, Ju-Hyun; Pareek, Tej K et al. (2008) Neurofilament tail phosphorylation: identity of the RT-97 phosphoepitope and regulation in neurons by cross-talk among proline-directed kinases. J Neurochem 107:35-49
Honjo, Yasuyuki; Nagineni, Chandrasekharam N; Larsson, Jonas et al. (2007) Neuron-specific TGF-beta signaling deficiency results in retinal detachment and cataracts in mice. Biochem Biophys Res Commun 352:418-22
Ohshima, Toshio; Hirasawa, Motoyuki; Tabata, Hidenori et al. (2007) Cdk5 is required for multipolar-to-bipolar transition during radial neuronal migration and proper dendrite development of pyramidal neurons in the cerebral cortex. Development 134:2273-82
Hirota, Yuki; Ohshima, Toshio; Kaneko, Naoko et al. (2007) Cyclin-dependent kinase 5 is required for control of neuroblast migration in the postnatal subventricular zone. J Neurosci 27:12829-38
Pareek, Tej K; Keller, Jason; Kesavapany, Sashi et al. (2007) Cyclin-dependent kinase 5 modulates nociceptive signaling through direct phosphorylation of transient receptor potential vanilloid 1. Proc Natl Acad Sci U S A 104:660-5
Pareek, Tej K; Keller, Jason; Kesavapany, Sashi et al. (2006) Cyclin-dependent kinase 5 activity regulates pain signaling. Proc Natl Acad Sci U S A 103:791-6

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