Chaperones are the primary regulators of the proteostasis network and are known to facilitate protein folding, inhibit protein aggregation, and promote disaggregation and clearance of misfolded aggregates inside cells. We have tested the effects of five chaperones on the toxicity of misfolded oligomers preformed from three different proteins added extracellularly to cultured cells. All the chaperones were found to decrease oligomer toxicity significantly, even at very low chaperone/protein molar ratios, provided that they were added extracellularly rather than being overexpressed in the cytosol. Infrared spectroscopy and site-directed labeling experiments using pyrene ruled out structural reorganizations within the discrete oligomers. Rathe...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Protein destabilization by mutations or external stresses may lead to misfolding and aggregation in ...
Chaperones are the primary regulators of the proteostasis network and are known to facilitate protei...
Living systems protect themselves from aberrant proteins by a network of chaperones. We have tested ...
Living systems protect themselves from aberrant proteins by a network of chaperones. We have tested ...
After the discovery of the need for extensive assistance in protein folding in the case of many nasc...
Protein oligomerization has two notable aspects: it is crucial for the performing cellular and molec...
External stresses or mutations may cause labile proteins to lose their distinct native conformations...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Molecular chaperones are essential to maintain proteostasis. While the functions of intracellular mo...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Molecular chaperones are key components of the arsenal of cellular defence mechanisms active against...
Molecular chaperones play a central role in protein homeostasis (a.k.a. proteostasis) by balancing p...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Protein destabilization by mutations or external stresses may lead to misfolding and aggregation in ...
Chaperones are the primary regulators of the proteostasis network and are known to facilitate protei...
Living systems protect themselves from aberrant proteins by a network of chaperones. We have tested ...
Living systems protect themselves from aberrant proteins by a network of chaperones. We have tested ...
After the discovery of the need for extensive assistance in protein folding in the case of many nasc...
Protein oligomerization has two notable aspects: it is crucial for the performing cellular and molec...
External stresses or mutations may cause labile proteins to lose their distinct native conformations...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Molecular chaperones are essential to maintain proteostasis. While the functions of intracellular mo...
Stress, molecular crowding and mutations may jeopardize the native folding of proteins. Misfolded an...
Molecular chaperones are key components of the arsenal of cellular defence mechanisms active against...
Molecular chaperones play a central role in protein homeostasis (a.k.a. proteostasis) by balancing p...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Protein destabilization by mutations or external stresses may lead to misfolding and aggregation in ...