Molecular chaperones were originally discovered as heat shock-induced proteins that facilitate proper folding of proteins with non-native conformations. While the function of chaperones in protein folding has been well documented over the last four decades, more recent studies have shown that chaperones are also necessary for the clearance of terminally misfolded proteins by the Ub-proteasome system. In this capacity, chaperones protect misfolded degradation substrates from spontaneous aggregation, facilitate their recognition by the Ub ligation machinery and finally shuttle the ubiquitylated substrates to the proteasome. The physiological importance of these functions is manifested by inefficient proteasomal degradation and the accumulati...
One of the shared hallmarks of neurodegenerative diseases is the accumulation of misfolded proteins....
In this issue, we explore the assembly roles of protein chaperones, mainly through the portal of the...
Stress-denatured or de novo synthesized and translocated unfolded polypeptides can spontaneously rea...
Molecular chaperones were originally discovered as heat shock-induced proteins that facilitate prope...
Molecular chaperones and their associated co-chaperones are essential in health and disease as they ...
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...
Chaperones function as the cell’s quality control system in a number of different ways. Simply put t...
Molecular chaperones and heat shock proteins (Hsp) have emerged as critical regulators of proteins a...
A variety of cellular internal and external stress conditions can be classified as proteotoxic stres...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Human neurodegenerative diseases arise from a wide array of genetic and environmental factors. Despi...
Molecular chaperones are known to facilitate cellular protein folding. They bind non-native proteins...
Molecular chaperones are diverse families of multidomain proteins that have evolved to assist nascen...
Many neurodegenerative diseases are characterized by the accumulation of misfolded proteins, which r...
One of the shared hallmarks of neurodegenerative diseases is the accumulation of misfolded proteins....
In this issue, we explore the assembly roles of protein chaperones, mainly through the portal of the...
Stress-denatured or de novo synthesized and translocated unfolded polypeptides can spontaneously rea...
Molecular chaperones were originally discovered as heat shock-induced proteins that facilitate prope...
Molecular chaperones and their associated co-chaperones are essential in health and disease as they ...
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...
Chaperones function as the cell’s quality control system in a number of different ways. Simply put t...
Molecular chaperones and heat shock proteins (Hsp) have emerged as critical regulators of proteins a...
A variety of cellular internal and external stress conditions can be classified as proteotoxic stres...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Human neurodegenerative diseases arise from a wide array of genetic and environmental factors. Despi...
Molecular chaperones are known to facilitate cellular protein folding. They bind non-native proteins...
Molecular chaperones are diverse families of multidomain proteins that have evolved to assist nascen...
Many neurodegenerative diseases are characterized by the accumulation of misfolded proteins, which r...
One of the shared hallmarks of neurodegenerative diseases is the accumulation of misfolded proteins....
In this issue, we explore the assembly roles of protein chaperones, mainly through the portal of the...
Stress-denatured or de novo synthesized and translocated unfolded polypeptides can spontaneously rea...