The molecular chaperone DnaK recognizes and binds substrate proteins via a stretch of seven amino acid residues that is usually only exposed in unfolded proteins. The binding kinetics are regulated by the nucleotide state of DnaK, which alternates between DnaK.ATP (fast exchange) and DnaK.ADP (slow exchange). These two forms cycle with a rate mainly determined by the ATPase activity of DnaK and nucleotide exchange. The different substrate binding properties of DnaK are mainly attributed to changes of the position and mobility of a helical region in the C-terminal peptide-binding domain, the so-called LID. It closes the peptide-binding pocket and thus makes peptide binding less dynamic in the ADP-bound state, but does not (strongly) interact...
Hsp70 chaperons interact with protein substrates in an ATP−dependent manner to prevent aggregation a...
To help cells cope with protein misfolding and aggregation, Hsp70 molecular chaperones selectively b...
The interaction of the nucleotide-free molecular chaperone DnaK (Hsp70) from Escherichia coli with n...
The molecular chaperone DnaK recognizes and binds substrate proteins via a stretch of seven amino ac...
The molecular chaperone DnaK recognizes and binds substrate proteins via a stretch of seven amino ac...
Hsp70 chaperones consist of two functional domains: the 44 kDa Nucleotide Binding Domain (NBD), that...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
DnaK is a molecular chaperone that has important roles in protein folding. The hydrolysis of ATP is ...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
AbstractThe molecular chaperone DnaK is composed of two functional domains, the ATPase domain and th...
<div><p>ATP regulates the function of many proteins in the cell by transducing its binding and hydro...
The Hsp70 family molecular chaperones prevent protein aggregation under heat shock conditions. They ...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
ATP regulates the function of many proteins in the cell by transducing its binding and hydrolysis en...
The interaction of the nucleotide-free molecular chaperone DnaK (Hsp70) from Escherichia coli with n...
Hsp70 chaperons interact with protein substrates in an ATP−dependent manner to prevent aggregation a...
To help cells cope with protein misfolding and aggregation, Hsp70 molecular chaperones selectively b...
The interaction of the nucleotide-free molecular chaperone DnaK (Hsp70) from Escherichia coli with n...
The molecular chaperone DnaK recognizes and binds substrate proteins via a stretch of seven amino ac...
The molecular chaperone DnaK recognizes and binds substrate proteins via a stretch of seven amino ac...
Hsp70 chaperones consist of two functional domains: the 44 kDa Nucleotide Binding Domain (NBD), that...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
DnaK is a molecular chaperone that has important roles in protein folding. The hydrolysis of ATP is ...
Interactions of the DnaK (Hsp70) chaperone from Escherichia coli with substrates are controlled by A...
AbstractThe molecular chaperone DnaK is composed of two functional domains, the ATPase domain and th...
<div><p>ATP regulates the function of many proteins in the cell by transducing its binding and hydro...
The Hsp70 family molecular chaperones prevent protein aggregation under heat shock conditions. They ...
Hsp70 chaperons interact with protein substrates in an ATP-dependent manner to prevent aggregation a...
ATP regulates the function of many proteins in the cell by transducing its binding and hydrolysis en...
The interaction of the nucleotide-free molecular chaperone DnaK (Hsp70) from Escherichia coli with n...
Hsp70 chaperons interact with protein substrates in an ATP−dependent manner to prevent aggregation a...
To help cells cope with protein misfolding and aggregation, Hsp70 molecular chaperones selectively b...
The interaction of the nucleotide-free molecular chaperone DnaK (Hsp70) from Escherichia coli with n...