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1. Cdk5 increases MARK4 activity and augments pathological tau accumulation and toxicity through tau phosphorylation at Ser262

2. Two Degradation Pathways of the p35 Cdk5 (Cyclin-dependent Kinase) Activation Subunit, Dependent and Independent of Ubiquitination

3. Preferential targeting of p39-activated Cdk5 to Rac1-induced lamellipodia

4. The effect of Cyclin-dependent kinase 5 on voltage-dependent calcium channels in PC12 cells varies according to channel type and cell differentiation state

5. Structural Basis for the Different Stability and Activity between the Cdk5 Complexes with p35 and p39 Activators

6. Membrane Association Facilitates Degradation and Cleavage of the Cyclin-Dependent Kinase 5 Activators p35 and p39

7. AATYK1A phosphorylation by Cdk5 regulates the recycling endosome pathway

8. Commitment of 1-Methyl-4-phenylpyrinidinium Ion-induced Neuronal Cell Death by Proteasome-mediated Degradation of p35 Cyclin-dependent Kinase 5 Activator

9. Suppression of Mutant Huntingtin Aggregate Formation by Cdk5/p35 through the Effect on Microtubule Stability

10. Regulation of the interaction of Disabled-1 with CIN85 by phosphorylation with Cyclin-dependent kinase 5

11. Cdk5-p39 is a labile complex with the similar substrate specificity to Cdk5-p35

12. Effects of p35 Mutations Associated with Mental Retardation on the Cellular Function of p35-CDK5

13. Identifying novel substrates for mouse Cdk5 kinase using the yeast Saccharomyces cerevisiae

14. Control of cyclin-dependent kinase 5 (Cdk5) activity by glutamatergic regulation of p35 stability

15. Phosphorylation of Cyclin-dependent Kinase 5 (Cdk5) at Tyr-15 Is Inhibited by Cdk5 Activators and Does Not Contribute to the Activation of Cdk5*

16. Cyclin-dependent kinase 5 phosphorylates and induces the degradation of ataxin-2

17. Phosphorylation of p35 and p39 by Cdk5 determines the subcellular location of the holokinase in a phosphorylation-site-specific manner

18. Cdk5 phosphorylation of its activators p35 and p39 determines subcellular location of the holokinase in a phosphorylation site-specific manner

19. Calpastatin, an endogenous calpain-inhibitor protein, regulates the cleavage of the Cdk5 activator p35 to p25

20. AATYK1A phosphorylation by Cdk5 regulates the recycling endosome pathway

21. Neuronal expression of two isoforms of mouse Septin 5

22. Myristoylation of p39 and p35 is a determinant of cytoplasmic or nuclear localization of active cyclin-dependent kinase 5 complexes

23. Regulation of the interaction of Disabled-1 with CIN85 by phosphorylation with Cyclin-dependent kinase 5

24. Regulation of membrane association and kinase activity of Cdk5-p35 by phosphorylation of p35

25. Cdk5--p39 is a labile complex with the similar substrate specificity to Cdk5--p35

26. Phosphorylation of adult type Sept5 (CDCrel-1) by cyclin-dependent kinase 5 inhibits interaction with syntaxin-1

27. Suppression of calpain-dependent cleavage of the CDK5 activator p35 to p25 by site-specific phosphorylation

28. Activation of latent cyclin-dependent kinase 5 (Cdk5)-p35 complexes by membrane dissociation

29. Phosphorylation of FTDP-17 mutant tau by cyclin-dependent kinase 5 complexed with p35, p25, or p39

30. Control of cyclin-dependent kinase 5 (Cdk5) activity by glutamatergic regulation of p35 stability

31. Apoptosis-associated tyrosine kinase is a Cdk5 activator p35 binding protein

33. Cdk5-induced neuronal cell death: The activation of the conventional Rb-E2F G1pathway in post-mitotic neurons

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