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Oncogene|April 21, 2001
Human cyclin C protein is stabilized by its associated kinase cdk8, independently of its catalytic activityC Barette, I Jariel-Encontre, M Piechaczyk, et al.Oncogene|August 5, 1998
Differential directing of c-Fos and c-Jun proteins to the proteasome in serum-stimulated mouse embryo fibroblastsC Salvat, I Jariel-Encontre, C Acquaviva, et al.European Journal of Biochemistry|June 10, 2000
Molecular characterization of the thermosensitive E1 ubiquitin-activating enzyme cell mutant A31N-ts20. Requirements upon different levels of E1 for the ubiquitination/degradation of the various protein substrates in vivoC Salvat, C Acquaviva, M Scheffner, et al.The Journal of Biological Chemistry|May 12, 1995
Ubiquitinylation is not an absolute requirement for degradation of c-Jun protein by the 26 S proteasomeI Jariel-Encontre, M Pariat, F Martin, et al.Journal of Molecular Biology|October 14, 1994
Evidence indicating proximity in the nucleosome between the histone H4 N termini and the globular domain of histone H1J L Banères, L Essalouh, I Jariel-Encontre, et al.Oncogene|December 26, 2001
Identification of a C-terminal tripeptide motif involved in the control of rapid proteasomal degradation of c-Fos proto-oncoprotein during the G(0)-to-S phase transitionC Acquaviva, F Brockly, P Ferrara, et al.Biochimie|April 11, 2001
Degradation of cellular and viral Fos proteinsC Acquaviva, P Ferrara, G Bossis, et al.Oncogene|April 21, 2001
Cellular and viral Fos proteins are degraded by different proteolytic systemsC Acquaviva, C Salvat, F Brockly, et al.Oncogene|June 15, 2010
Heterodimerization with Fra-1 cooperates with the ERK pathway to stabilize c-Jun in response to the RAS oncoproteinF Talotta, T Mega, G Bossis, et al.Molecular Biology Reports|March 1, 1997
Complex mechanisms for c-fos and c-jun degradationI Jariel-Encontre, C Salvat, A M Steff, et al.Pageof 2