AbstractMutations in the rpoH gene, encoding σ32, an alternative factor required for transcription of the heat shock genes, result in the extensive aggregation of virtually all cellular proteins and formation of inclusion bodies both under stress and non-stress conditions. Inhibitors of protein synthesis suppress this aggregation, suggesting that newly synthesized proteins preferentially aggregate in rpoH mutants. These data suggest that the heat shock proteins are involved in acquisition of the soluble state (i.e. correct conformation) of the bulk of intracellular proteins after their translation
AbstractProtein misfolding and aggregation are linked to several degenerative diseases and are respo...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...
AbstractMutations in the rpoH gene, encoding σ32, an alternative factor required for transcription o...
Escherichia coli small heat shock proteins, IbpA/B, function as molecular chaperones and protect mis...
During production in recombinant Escherichia coli, the human basic fibroblast growth factor (hFGF-2)...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
SummaryHeat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation...
AbstractThe proteolysis of regulatory proteins plays an important role in the control of gene expres...
Accumulation of abnormal proteins in cells of bacteria or eukaryotes can induce synthesis of a set o...
Heat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation of pro...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
Background: The molecular mechanics of inclusion body formation is still far from being completely u...
The roles of the Escherichia coli lbpA and lbpB chaperones in protection of heat-denatured proteins ...
AbstractProtein misfolding and aggregation are linked to several degenerative diseases and are respo...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...
AbstractMutations in the rpoH gene, encoding σ32, an alternative factor required for transcription o...
Escherichia coli small heat shock proteins, IbpA/B, function as molecular chaperones and protect mis...
During production in recombinant Escherichia coli, the human basic fibroblast growth factor (hFGF-2)...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
SummaryHeat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation...
AbstractThe proteolysis of regulatory proteins plays an important role in the control of gene expres...
Accumulation of abnormal proteins in cells of bacteria or eukaryotes can induce synthesis of a set o...
Heat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation of pro...
Protein misfolding and aggregation are typically perceived as inevitable and detrimental processes t...
Background: The molecular mechanics of inclusion body formation is still far from being completely u...
The roles of the Escherichia coli lbpA and lbpB chaperones in protection of heat-denatured proteins ...
AbstractProtein misfolding and aggregation are linked to several degenerative diseases and are respo...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
Temperature fluctuation is one of the most frequent threats to which organisms are exposed in nature...