The recombinant expression of eukaryotic proteins in Escherichia coli often results in protein aggregation. Several articles report on improved solubility and increased purification yields of individual proteins upon over-expression of E. coli chaperones but this effect might potentially be protein-specific. To find out whether chaperone over-expression is a generally applicable strategy for the production of human protein kinases in E. coli, we analyzed 10 kinases, mainly as catalytic domain constructs. The kinases studied, namely c-Src, c-Abl, Hck, Lck, Igf1R, InsR, KDR, c-Met, b-Raf and Irak4, belong to the tyrosine and tyrosine kinase-like groups of kinases. Upon over-expression of the E. coli chaperones DnaK/DnaJ/GrpE and GroEL/GroES, ...
Escherichia coli trigger factor (TF) and DnaK cooperate in the folding of newly synthesized proteins...
When massively expressed in bacteria, recombinant proteins often tend to misfold and accumulate as s...
Despite the fundamental importance of E. coli in the manufacture of a wide range of biotechnological...
Background: The overproduction of recombinant proteins in host cells often leads to their misfolding...
Abstract Background The overproduction of recombinant proteins in host cells often leads to their mi...
Coproduction of DnaK/DnaJ in Escherichia coli enhances solubility but promotes proteolytic degradati...
Protein folding is often hampered by protein aggregation, which can be prevented by a variety of ...
The physiological consequences of molecular chaperone overproduction in Escherichia coli are present...
Main Escherichia coli cytosolic chaperones such as DnaK are key components of the control quality ne...
Manipulating the cytoplasmic folding environment by increasing the intracellular concentration of fo...
Insufficient availability of molecular chaperones is observed as a major bottleneck for proper prote...
Misfolding-prone proteins produced in bacteria usually fail to adopt their native conformation and a...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
The DnaK/DnaJ Escherichia coli chaperone pair, co-produced along with recombinant proteins, has been...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Escherichia coli trigger factor (TF) and DnaK cooperate in the folding of newly synthesized proteins...
When massively expressed in bacteria, recombinant proteins often tend to misfold and accumulate as s...
Despite the fundamental importance of E. coli in the manufacture of a wide range of biotechnological...
Background: The overproduction of recombinant proteins in host cells often leads to their misfolding...
Abstract Background The overproduction of recombinant proteins in host cells often leads to their mi...
Coproduction of DnaK/DnaJ in Escherichia coli enhances solubility but promotes proteolytic degradati...
Protein folding is often hampered by protein aggregation, which can be prevented by a variety of ...
The physiological consequences of molecular chaperone overproduction in Escherichia coli are present...
Main Escherichia coli cytosolic chaperones such as DnaK are key components of the control quality ne...
Manipulating the cytoplasmic folding environment by increasing the intracellular concentration of fo...
Insufficient availability of molecular chaperones is observed as a major bottleneck for proper prote...
Misfolding-prone proteins produced in bacteria usually fail to adopt their native conformation and a...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
The DnaK/DnaJ Escherichia coli chaperone pair, co-produced along with recombinant proteins, has been...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Escherichia coli trigger factor (TF) and DnaK cooperate in the folding of newly synthesized proteins...
When massively expressed in bacteria, recombinant proteins often tend to misfold and accumulate as s...
Despite the fundamental importance of E. coli in the manufacture of a wide range of biotechnological...