Hop/Stip1/Sti1 is thought to be essential as a co-chaperone to facilitate substrate transfer between the Hsp70 and Hsp90 molecular chaperones. Despite this proposed key function for protein folding and maturation, it is not essential in a number of eukaryotes and bacteria lack an ortholog. We set out to identify and to characterize its eukaryote-specific function. Human cell lines and the budding yeast with deletions of the Hop/Sti1 gene display reduced pro- teasome activity due to inefficient capping of the core particle with regulatory particles. Unexpectedly, knock-out cells are more proficient at preventing protein aggregation and at promoting protein refolding. Without the restraint by Hop, a more efficient folding activity of the prok...
International audienceHeat shock protein 90 (Hsp90) is a highly conserved ATP-dependent molecular ch...
Heat shock protein (Hsp) 70 and Hsp90 are an evolutionarily conserved class of molecular chaperones ...
Protein homeostasis relies on a balance between protein folding and protein degradation. Molecular c...
Hop/Stip1/Sti1 is thought to be essential as a co-chaperone to facilitate substrate transfer between...
Hop/Stip1/Sti1 is thought to be essential as a co-chaperone to facilitate substrate transfer between...
In eukaryotes, the molecular chaperones Hsp90 and Hsp70 are connected via the co-chaperone Sti1/Hop,...
Hsp90 is an essential chaperone protein in the cytosol of eukaryotic cells. It cooperates with the c...
The Hsp70/Hsp90 organising protein (Hop), also known as stress-inducible protein 1 (STI1), has recei...
Molecular chaperones facilitate the correct folding of other proteins under physiological and stres...
Hop/STIP1 is a co-chaperone of Hsp70 and Hsp90 that regulates a number of cell biology processes via...
The molecular chaperones Hsp90 and Hsp70 and their regulatory co-chaperone Hop play a key role at th...
Heat shock proteins Hsp90 and Hsp70 facilitate protein folding but can also direct proteins for ubiq...
The molecular chaperones Hsp90 and Hsp70 and their regulatory co-chaperone Hop play a key role at th...
8 Pág.Protein folding is an essential step for protein functionality. In eukaryotes this process is ...
International audienceHeat shock protein 90 (Hsp90) is a highly conserved ATP-dependent molecular ch...
Heat shock protein (Hsp) 70 and Hsp90 are an evolutionarily conserved class of molecular chaperones ...
Protein homeostasis relies on a balance between protein folding and protein degradation. Molecular c...
Hop/Stip1/Sti1 is thought to be essential as a co-chaperone to facilitate substrate transfer between...
Hop/Stip1/Sti1 is thought to be essential as a co-chaperone to facilitate substrate transfer between...
In eukaryotes, the molecular chaperones Hsp90 and Hsp70 are connected via the co-chaperone Sti1/Hop,...
Hsp90 is an essential chaperone protein in the cytosol of eukaryotic cells. It cooperates with the c...
The Hsp70/Hsp90 organising protein (Hop), also known as stress-inducible protein 1 (STI1), has recei...
Molecular chaperones facilitate the correct folding of other proteins under physiological and stres...
Hop/STIP1 is a co-chaperone of Hsp70 and Hsp90 that regulates a number of cell biology processes via...
The molecular chaperones Hsp90 and Hsp70 and their regulatory co-chaperone Hop play a key role at th...
Heat shock proteins Hsp90 and Hsp70 facilitate protein folding but can also direct proteins for ubiq...
The molecular chaperones Hsp90 and Hsp70 and their regulatory co-chaperone Hop play a key role at th...
8 Pág.Protein folding is an essential step for protein functionality. In eukaryotes this process is ...
International audienceHeat shock protein 90 (Hsp90) is a highly conserved ATP-dependent molecular ch...
Heat shock protein (Hsp) 70 and Hsp90 are an evolutionarily conserved class of molecular chaperones ...
Protein homeostasis relies on a balance between protein folding and protein degradation. Molecular c...