The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubilization of aggregated proteins. A sequential mechanism has been proposed for this reaction; however, the mechanism and the functional interplay between both chaperones remain poorly defined. Here, we show for the first time that complex formation of ClpB and DnaK can be detected by using various types of affinity chromatography methods. The finding that the DnaK chaperone of Escherichia coli is not co-operating with ClpB from Thermus thermophilus further strengthens the specificity of this complex. The affinity of the complex is weak and interaction between both chaperones is nucleotide-dependent. The presence of ADP, which is shown to cause dis...
Cell survival under severe thermal stress requires the activity of a bi-chaperone system, consisting...
ClpB and DnaKJE provide protection to <i>Escherichia coli</i> cells during extreme environmental str...
Hsp104 and ClpB are hexameric ATPases that resolubilize aggregated proteins in collaboration with th...
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...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
Doctor of PhilosophyGraduate Biochemistry GroupMichal ZolkiewskiClpB, a bacterial chaperone that bel...
The chaperone ClpB in bacteria is responsible for the reactivation of aggregated proteins in collabo...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
The 580 kDa hexameric ClpB molecular chaperone is a bacterial ATP-dependent protein-remodeling machi...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
Hsp70 chaperons interact with protein substrates in an ATP−dependent manner to prevent aggregation a...
AbstractReactivation of intracellular protein aggregates after a severe stress is mandatory for cell...
Cell survival under severe thermal stress requires the activity of a bi-chaperone system, consisting...
ClpB and DnaKJE provide protection to <i>Escherichia coli</i> cells during extreme environmental str...
Hsp104 and ClpB are hexameric ATPases that resolubilize aggregated proteins in collaboration with th...
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...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
Doctor of PhilosophyGraduate Biochemistry GroupMichal ZolkiewskiClpB, a bacterial chaperone that bel...
The chaperone ClpB in bacteria is responsible for the reactivation of aggregated proteins in collabo...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
The 580 kDa hexameric ClpB molecular chaperone is a bacterial ATP-dependent protein-remodeling machi...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
Hsp70 chaperons interact with protein substrates in an ATP−dependent manner to prevent aggregation a...
AbstractReactivation of intracellular protein aggregates after a severe stress is mandatory for cell...
Cell survival under severe thermal stress requires the activity of a bi-chaperone system, consisting...
ClpB and DnaKJE provide protection to <i>Escherichia coli</i> cells during extreme environmental str...
Hsp104 and ClpB are hexameric ATPases that resolubilize aggregated proteins in collaboration with th...