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Your search keyword '"Masayuki Komada"' showing total 19 results

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19 results on '"Masayuki Komada"'

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1. Molecular basis of ubiquitin-specific protease 8 autoinhibition by the WW-like domain

2. Nik‐related kinase is targeted for proteasomal degradation by the chaperone‐dependent ubiquitin ligase CHIP

3. The ubiquitin-specific protease USP17 prevents cellular senescence by stabilizing the methyltransferase SET8 and transcriptionally repressing p21

4. Ub-ProT reveals global length and composition of protein ubiquitylation in cells

5. Deubiquitylases USP5 and USP13 are recruited to and regulate heat-induced stress granules through their deubiquitylating activities

6. Ubiquitin-interacting Motifs Confer Full Catalytic Activity, but Not Ubiquitin Chain Substrate Specificity, to Deubiquitinating Enzyme USP37

7. The Ankrd13 Family of Ubiquitin-interacting Motif-bearing Proteins Regulates Valosin-containing Protein/p97 Protein-mediated Lysosomal Trafficking of Caveolin 1

8. The Ankrd 13 family of UIM-bearing proteins regulates EGF receptor endocytosis from the plasma membrane

9. Balanced ubiquitylation and deubiquitylation of Frizzled regulate cellular responsiveness to Wg/Wnt

10. Ub-ProT reveals global length and composition of protein ubiquitylation in cells.

11. Balanced ubiquitination determines cellular responsiveness to extracellular stimuli

12. [Link between endosomal membrane traffic and cytokinesis]

13. [Cellular functions of the deubiquitylating enzyme family]

14. Nucleophosmin/B23 Regulates Ubiquitin Dynamics in Nucleoli by Recruiting Deubiquitylating Enzyme USP36*

15. [Regulation of cytokinesis by the ubiquitin conjugation system]

16. Controlling receptor downregulation by ubiquitination and deubiquitination

17. USP8 prevents aberrant NF-κB and Nrf2 activation by counteracting ubiquitin signals from endosomes.

18. The ubiquitin-specific protease USP17 prevents cellular senescence by stabilizing the methyltransferase SET8 and transcriptionally repressing p21.

19. Ubiquitin-interacting Motifs Confer Full Catalytic Activity, but Not Ubiquitin Chain Substrate Specificity, to Deubiquitinating Enzyme USP37.

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