Stress-denatured or de novo synthesized and translocated unfolded polypeptides can spontaneously reach their native state without assistance of other proteins. Yet, the pathway to native folding is complex, stress-sensitive and prone to errors. Toxic misfolded and aggregated conformers may accumulate in cells and lead to degenerative diseases. Members of the canonical conserved families of molecular chaperones, Hsp100s, Hsp70/110/40s, Hsp60/CCTs, the small Hsps and probably also Hsp90s, can recognize and bind with high affinity, abnormally exposed hydrophobic surfaces on misfolded and aggregated polypeptides. Binding to Hsp100, Hsp70, Hsp110, Hsp40, Hsp60, CCTs and Trigger factor may cause partial unfolding of the misfolded polypeptide subs...
The chaperone protein network controls both initial protein folding and subsequent maintenance of pr...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
Protein destabilization by mutations or external stresses may lead to misfolding and aggregation in ...
Molecular chaperones are a class of proteins that interact with the non-native conformations of othe...
Members of the HSP70/HSP110 family (HSP70s) form a central hub of the chaperone network controlling ...
Molecular chaperones are diverse families of multidomain proteins that have evolved to assist nascen...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Structurally and sequence-wise, the Hsp110s belong to a subfamily of the Hsp70 chaperones. Like the ...
nhgri.nih.gov The native (correctly folded) state of a protein is required for biological activity a...
The chaperone protein network controls both initial protein folding and subsequent maintenance of pr...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
Protein destabilization by mutations or external stresses may lead to misfolding and aggregation in ...
Molecular chaperones are a class of proteins that interact with the non-native conformations of othe...
Members of the HSP70/HSP110 family (HSP70s) form a central hub of the chaperone network controlling ...
Molecular chaperones are diverse families of multidomain proteins that have evolved to assist nascen...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Structurally and sequence-wise, the Hsp110s belong to a subfamily of the Hsp70 chaperones. Like the ...
nhgri.nih.gov The native (correctly folded) state of a protein is required for biological activity a...
The chaperone protein network controls both initial protein folding and subsequent maintenance of pr...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...
Proteins are composed of linear chains of amino acids. Upon synthesis in the cell, most proteins mus...