Stresses such as heat shock trigger formation of protein aggregates and induction of a disaggregation system composed of molecular chaperones. Recent work reveals that several cases of apparent heat-induced aggregation, long thought to be the result of toxic misfolding, instead reflect evolved, adaptive biomolecular condensation, with chaperone activity contributing to condensate regulation. Here I show that the yeast disaggregation system directly disperses heat-induced biomolecular condensates of endogenous poly(A)-binding protein (Pab1) orders of magnitude more rapidly than aggregates of the most commonly used misfolded model substrate, firefly luciferase. Beyond its efficiency, heat-induced condensate dispersal differs from heat-induced...
Small heat shock proteins (sHsps) are a diverse group of heat-induced proteins that are conserved in...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...
The majority of proteins require molecular chaperones to assist their folding into tertiary and quat...
SummaryHeat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation...
Heat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation of pro...
Cells have developed protein quality-control strategies to manage the accumulation of misfolded subs...
How cells adapt to varying environmental conditions is largely unknown. Here, we show that, in buddi...
Heat causes protein misfolding and aggregation and in eukaryotic cells triggers aggregation of prote...
Poly(A)-binding protein (PABP, Pab1 in budding yeast), is a canonical stress granule marker that is ...
Molecular chaperones are essential for cells to prevent that partially unfolded proteins form non-fu...
Cells must sense and respond to sudden maladaptive environmental changes—stresses—to survive and thr...
Data de publicació electrónica: 01-01-2021Under thermal stress, different protein quality control (P...
AbstractHsp104 is a stress tolerance factor that promotes the reactivation of heat-damaged proteins ...
Abstract In human cells under stress conditions, misfolded polypeptides can form potentially cytotox...
External stresses or mutations may cause labile proteins to lose their distinct native conformations...
Small heat shock proteins (sHsps) are a diverse group of heat-induced proteins that are conserved in...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...
The majority of proteins require molecular chaperones to assist their folding into tertiary and quat...
SummaryHeat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation...
Heat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation of pro...
Cells have developed protein quality-control strategies to manage the accumulation of misfolded subs...
How cells adapt to varying environmental conditions is largely unknown. Here, we show that, in buddi...
Heat causes protein misfolding and aggregation and in eukaryotic cells triggers aggregation of prote...
Poly(A)-binding protein (PABP, Pab1 in budding yeast), is a canonical stress granule marker that is ...
Molecular chaperones are essential for cells to prevent that partially unfolded proteins form non-fu...
Cells must sense and respond to sudden maladaptive environmental changes—stresses—to survive and thr...
Data de publicació electrónica: 01-01-2021Under thermal stress, different protein quality control (P...
AbstractHsp104 is a stress tolerance factor that promotes the reactivation of heat-damaged proteins ...
Abstract In human cells under stress conditions, misfolded polypeptides can form potentially cytotox...
External stresses or mutations may cause labile proteins to lose their distinct native conformations...
Small heat shock proteins (sHsps) are a diverse group of heat-induced proteins that are conserved in...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...
The majority of proteins require molecular chaperones to assist their folding into tertiary and quat...