AbstractReactivation of intracellular protein aggregates after a severe stress is mandatory for cell survival. In bacteria, this activity depends on the collaboration between the DnaK system and ClpB, which in vivo occurs in a highly crowded environment. The reactivation reaction includes two steps: extraction of unfolded monomers from the aggregate and their subsequent refolding into the native conformation. Both steps might be compromised by excluded volume conditions that would favor aggregation of unstable protein folding intermediates. Here, we have investigated whether ClpB and the DnaK system are able to compensate this unproductive effect and efficiently reactivate aggregates of three different substrate proteins under crowding cond...
Classic in vitro studies show that the Hsp70 chaperone system from Escherichia coli (DnaK-DnaJ-GrpE,...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
AbstractThe AAA+ chaperone ClpB solubilizes in cooperation with the DnaK chaperone system aggregated...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubiliza...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
AbstractIntracellular protein aggregates formed under severe thermal stress can be reactivated by th...
Doctor of PhilosophyGraduate Biochemistry GroupMichal ZolkiewskiClpB, a bacterial chaperone that bel...
Bacteria, fungi and plants rescue aggregated proteins using a powerful bichaperone system composed o...
We have studied the effects of polysaccharide and protein crowding agents on the refolding of oxidiz...
ClpB and DnaKJE provide protection to <i>Escherichia coli</i> cells during extreme environmental str...
Hsp70 is a central molecular chaperone that passively prevents protein aggregation and uses the ener...
The chaperone ClpB in bacteria is responsible for the reactivation of aggregated proteins in collabo...
Cell survival under severe thermal stress requires the activity of a bi-chaperone system, consisting...
ClpB, a bacterial Hsp100, is a ring-shaped AAA+ chaperone that can reactivate aggregated proteins in...
AbstractMacromolecular crowding has long been known to significantly affect protein oligomerization,...
Classic in vitro studies show that the Hsp70 chaperone system from Escherichia coli (DnaK-DnaJ-GrpE,...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
AbstractThe AAA+ chaperone ClpB solubilizes in cooperation with the DnaK chaperone system aggregated...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubiliza...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
AbstractIntracellular protein aggregates formed under severe thermal stress can be reactivated by th...
Doctor of PhilosophyGraduate Biochemistry GroupMichal ZolkiewskiClpB, a bacterial chaperone that bel...
Bacteria, fungi and plants rescue aggregated proteins using a powerful bichaperone system composed o...
We have studied the effects of polysaccharide and protein crowding agents on the refolding of oxidiz...
ClpB and DnaKJE provide protection to <i>Escherichia coli</i> cells during extreme environmental str...
Hsp70 is a central molecular chaperone that passively prevents protein aggregation and uses the ener...
The chaperone ClpB in bacteria is responsible for the reactivation of aggregated proteins in collabo...
Cell survival under severe thermal stress requires the activity of a bi-chaperone system, consisting...
ClpB, a bacterial Hsp100, is a ring-shaped AAA+ chaperone that can reactivate aggregated proteins in...
AbstractMacromolecular crowding has long been known to significantly affect protein oligomerization,...
Classic in vitro studies show that the Hsp70 chaperone system from Escherichia coli (DnaK-DnaJ-GrpE,...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
AbstractThe AAA+ chaperone ClpB solubilizes in cooperation with the DnaK chaperone system aggregated...