Members of the family of ATPases associated with various cellular activities (AAA+) typically form homohexameric ring complexes and are able to remodel their substrates, such as misfolded proteins or protein−protein complexes, in an ATP−driven process. The molecular mechanism by which ATP hydrolysis is coordinated within the multimeric complex and the energy is converted into molecular motions, however, is poorly understood. This is partly due to the fact that the oligomers formed by AAA+ proteins represent a highly complex system and analysis depends on simplification and prior knowledge. Here, we present nucleotide binding and oligomer assembly kinetics of the AAA+ protein ClpB, a molecular chaperone that is able to disaggregate protein a...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubiliza...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
The bacterial AAA+ chaperone ClpB provides thermotolerance by disaggregating aggregated proteins in ...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
The molecular chaperone ClpB/Hsp104, a member of the AAA+ superfamily (ATPases associated with vario...
The bacterial AAA+ protein ClpB and its eukaryotic homologue Hsp104 ensure thermotolerance of their ...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
Doctor of PhilosophyDepartment of BiochemistryMichal ZolkiewskiClpB is a bacterial heat-shock protei...
Non−destructive dissagregation of protein aggregates is a formidable task mediated by the specialize...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
SummaryClpX, a AAA+ ring homohexamer, uses the energy of ATP binding and hydrolysis to power conform...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubiliza...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
The bacterial AAA+ chaperone ClpB provides thermotolerance by disaggregating aggregated proteins in ...
ClpB cooperates with the DnaK chaperone system in the reactivation of protein from aggregates and is...
The molecular chaperone ClpB/Hsp104, a member of the AAA+ superfamily (ATPases associated with vario...
The bacterial AAA+ protein ClpB and its eukaryotic homologue Hsp104 ensure thermotolerance of their ...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
Doctor of PhilosophyDepartment of BiochemistryMichal ZolkiewskiClpB is a bacterial heat-shock protei...
Non−destructive dissagregation of protein aggregates is a formidable task mediated by the specialize...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
SummaryClpX, a AAA+ ring homohexamer, uses the energy of ATP binding and hydrolysis to power conform...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co-operate in the ATP-dependent resolubiliza...
ClpB belongs to the Hsp100 family and assists de-aggregation of protein aggregates by DnaK chaperone...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...