DnaK is a member of the Hsp70 family of molecular chaperones. This molecular machine couples the binding and hydrolysis of ATP to binding and release of substrate proteins. The switches that are involved in allosteric communication within this multidomain protein are mostly unknown. Previous insights were largely obtained by mutants, which displayed either wild−type activity or reduced folding assistance of substrate proteins. With a directed evolution approach for improved folding assistance we selected a DnaK variant characterized by a glycine to alanine substitution at position 384 (G384A); this resulted in a 2.5−fold higher chaperone activity in an in vitro DnaK−assisted firefly luciferase refolding assay. Quantitative biochemical chara...
Hsp70 molecular chaperones have key functions in the cell for folding, repair and degradation of pro...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
DnaK is a member of the Hsp70 family of molecular chaperones. This molecular machine couples the bin...
DnaK is a member of the Hsp70 family of molecular chaperones. This molecular machine couples the bin...
We improved the DnaK molecular chaperone system for increased folding efficiency towards two target ...
We improved the DnaK molecular chaperone system for increased folding efficiency towards two target ...
AbstractHsp70s assist the folding of proteins in an ATP-dependent manner. DnaK, the Hsp70 of Escheri...
Hsp70 chaperones assist a large variety of protein folding processes within the entire lifespan of p...
The Hsp70 family molecular chaperones prevent protein aggregation under heat shock conditions. They ...
sp70 chaperones assist a large variety of protein folding processes within the entire lifespan of pr...
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...
DnaK is a molecular chaperone that has important roles in protein folding. The hydrolysis of ATP is ...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
Hsp70 molecular chaperones have key functions in the cell for folding, repair and degradation of pro...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
DnaK is a member of the Hsp70 family of molecular chaperones. This molecular machine couples the bin...
DnaK is a member of the Hsp70 family of molecular chaperones. This molecular machine couples the bin...
We improved the DnaK molecular chaperone system for increased folding efficiency towards two target ...
We improved the DnaK molecular chaperone system for increased folding efficiency towards two target ...
AbstractHsp70s assist the folding of proteins in an ATP-dependent manner. DnaK, the Hsp70 of Escheri...
Hsp70 chaperones assist a large variety of protein folding processes within the entire lifespan of p...
The Hsp70 family molecular chaperones prevent protein aggregation under heat shock conditions. They ...
sp70 chaperones assist a large variety of protein folding processes within the entire lifespan of pr...
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...
DnaK is a molecular chaperone that has important roles in protein folding. The hydrolysis of ATP is ...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
Hsp70 molecular chaperones have key functions in the cell for folding, repair and degradation of pro...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...