SummaryProtein degradation by the ubiquitin-proteasome system is central to cell homeostasis and survival. Defects in this process are associated with diseases such as cancer and neurodegenerative disorders. The 26S proteasome is a large protease complex that degrades ubiquitinated proteins. Here, we show that ADP-ribosylation promotes 26S proteasome activity in both Drosophila and human cells. We identify the ADP-ribosyltransferase tankyrase (TNKS) and the 19S assembly chaperones dp27 and dS5b as direct binding partners of the proteasome regulator PI31. TNKS-mediated ADP-ribosylation of PI31 drastically reduces its affinity for 20S proteasome α subunits to relieve 20S repression by PI31. Additionally, PI31 modification increases binding to...
SummaryATP hydrolysis is required for degradation of polyubiquitinated proteins by the 26S proteasom...
Ubiquitin-dependent proteolysis is catalyzed by the 26S proteasome, a dynamic complex of 32 differen...
Citation: Wani, P. S., Suppahia, A., Capalla, X., Ondracek, A., & Roelofs, J. (2016). Phosphorylatio...
SummaryProtein degradation by the ubiquitin-proteasome system is central to cell homeostasis and sur...
The specific and timely degradation of proteins is achieved by the Ubiquitin-Proteasome System (UPS)...
Emerging data reveal that besides degrading proteins tagged with ubiquitin, the proteasome plays a m...
SummaryThe ubiquitin-proteasome system catalyzes the degradation of intracellular proteins. Although...
The fundamental importance of the 26S proteasome in health and disease suggests that its function mu...
SummaryThe 26S proteasome is a highly conserved multisubunit protease that degrades ubiquitinated pr...
Biological processes depend upon the structural and functional quality of the molecules that compris...
The 26S proteasome is a multisubunit complex that catalyzes the degradation of ubiquitinated protein...
The proteasome is a major non-lysosomal proteolytic complex present in eukaryotic cells and has a ce...
AbstractThe 26S proteasome is responsible for regulated proteolysis of most intracellular proteins y...
AbstractWe examined the mechanism responsible for the degradation of p21, a negative regulator of th...
Doctor of PhilosophyDivision of BiologyJeroen RoelofsThe ubiquitin-proteasome pathway is the major p...
SummaryATP hydrolysis is required for degradation of polyubiquitinated proteins by the 26S proteasom...
Ubiquitin-dependent proteolysis is catalyzed by the 26S proteasome, a dynamic complex of 32 differen...
Citation: Wani, P. S., Suppahia, A., Capalla, X., Ondracek, A., & Roelofs, J. (2016). Phosphorylatio...
SummaryProtein degradation by the ubiquitin-proteasome system is central to cell homeostasis and sur...
The specific and timely degradation of proteins is achieved by the Ubiquitin-Proteasome System (UPS)...
Emerging data reveal that besides degrading proteins tagged with ubiquitin, the proteasome plays a m...
SummaryThe ubiquitin-proteasome system catalyzes the degradation of intracellular proteins. Although...
The fundamental importance of the 26S proteasome in health and disease suggests that its function mu...
SummaryThe 26S proteasome is a highly conserved multisubunit protease that degrades ubiquitinated pr...
Biological processes depend upon the structural and functional quality of the molecules that compris...
The 26S proteasome is a multisubunit complex that catalyzes the degradation of ubiquitinated protein...
The proteasome is a major non-lysosomal proteolytic complex present in eukaryotic cells and has a ce...
AbstractThe 26S proteasome is responsible for regulated proteolysis of most intracellular proteins y...
AbstractWe examined the mechanism responsible for the degradation of p21, a negative regulator of th...
Doctor of PhilosophyDivision of BiologyJeroen RoelofsThe ubiquitin-proteasome pathway is the major p...
SummaryATP hydrolysis is required for degradation of polyubiquitinated proteins by the 26S proteasom...
Ubiquitin-dependent proteolysis is catalyzed by the 26S proteasome, a dynamic complex of 32 differen...
Citation: Wani, P. S., Suppahia, A., Capalla, X., Ondracek, A., & Roelofs, J. (2016). Phosphorylatio...