Misfolding-prone proteins produced in bacteria usually fail to adopt their native conformation and aggregate. In cells producing folding-reluctant protein species, folding modulators are supposed to be limiting, a fact that enhances protein deposition. Therefore, coproducing DnaK or other main chaperones along with the target protein has been a common approach to gain solubility, although with very inconsistent and often discouraging results. In an attempt to understand the reason for this inconsistency, the impact of exogenous DnaK (encoded in an accompanying plasmid) on two protein features observed as indicators of protein quality, namely solubility and functionality, has been analysed here through the specific fluorescence emission of a...
Hydrophobic interactions between molecular chaperones and their nonnative substrates have been belie...
The recombinant expression of eukaryotic proteins in Escherichia coli often results in protein aggre...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Misfolding-prone proteins produced in bacteria usually fail to adopt their native conformation and a...
In bacteria, protein overproduction results in the formation of inclusion bodies, sized protein aggr...
Many enzymes or fluorescent proteins produced in Escherichia coli are enzymatically active or fluore...
Coproduction of DnaK/DnaJ in Escherichia coli enhances solubility but promotes proteolytic degradati...
Background: The molecular mechanics of inclusion body formation is still far from being completely u...
The DnaK/DnaJ Escherichia coli chaperone pair, co-produced along with recombinant proteins, has been...
Classic in vitro studies show that the Hsp70 chaperone system from Escherichia coli (DnaK-DnaJ-GrpE,...
Main Escherichia coli cytosolic chaperones such as DnaK are key components of the control quality ne...
Chaperones play a central part in the quality control system in cells by clearing misfolded and aggr...
<div><p>Protein chaperones are essential in all domains of life to prevent and resolve protein misfo...
AbstractProtein misfolding and aggregation are linked to several degenerative diseases and are respo...
During production in recombinant Escherichia coli, the human basic fibroblast growth factor (hFGF-2)...
Hydrophobic interactions between molecular chaperones and their nonnative substrates have been belie...
The recombinant expression of eukaryotic proteins in Escherichia coli often results in protein aggre...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Misfolding-prone proteins produced in bacteria usually fail to adopt their native conformation and a...
In bacteria, protein overproduction results in the formation of inclusion bodies, sized protein aggr...
Many enzymes or fluorescent proteins produced in Escherichia coli are enzymatically active or fluore...
Coproduction of DnaK/DnaJ in Escherichia coli enhances solubility but promotes proteolytic degradati...
Background: The molecular mechanics of inclusion body formation is still far from being completely u...
The DnaK/DnaJ Escherichia coli chaperone pair, co-produced along with recombinant proteins, has been...
Classic in vitro studies show that the Hsp70 chaperone system from Escherichia coli (DnaK-DnaJ-GrpE,...
Main Escherichia coli cytosolic chaperones such as DnaK are key components of the control quality ne...
Chaperones play a central part in the quality control system in cells by clearing misfolded and aggr...
<div><p>Protein chaperones are essential in all domains of life to prevent and resolve protein misfo...
AbstractProtein misfolding and aggregation are linked to several degenerative diseases and are respo...
During production in recombinant Escherichia coli, the human basic fibroblast growth factor (hFGF-2)...
Hydrophobic interactions between molecular chaperones and their nonnative substrates have been belie...
The recombinant expression of eukaryotic proteins in Escherichia coli often results in protein aggre...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...