The production of recombinant proteins in a large scale is important for protein functional and structural studies, particularly by using Escherichia coli over-expression systems; however, approximate 70% of recombinant proteins are over-expressed as insoluble inclusion bodies. Here we presented an efficient method for generating soluble proteins from inclusion bodies by using two steps of denaturation and one step of refolding. We first demonstrated the advantages of this method over a conventional procedure with one denaturation step and one refolding step using three proteins with different folding properties. The refolded proteins were found to be active using in vitro tests and a bioassay. We then tested the general applicability of th...
E. coli is a convenient host in which to express recombinant proteins. The technology is available t...
Protein refolding is still a bottleneck for large-scale production of valuable proteins expressed as...
The efficient in vivo folding of many heterologous proteins is a major bottleneck of high level prod...
Overexpression of foreign proteins in Escherichia coli often leads to the formation of inclusion bod...
Biologically active proteins are useful for studying the biological functions of genes and for the d...
The rapid provision of purified native protein underpins both structural biology and the development...
Abstract Recent advances in generating active proteins through refolding of bacterial inclusion body...
Expression of recombinant proteins in Escherichia coli is normally accompanied by the formation of i...
The overexpression of recombinant proteins in Escherichia coli leads in most cases to their accumula...
Many recombinant eukaryotic proteins tend to form insoluble aggregates called inclusion bodies, espe...
Protein refolding is an important process to recover active recombinant proteins from inclusion bodi...
The expression and harvesting of proteins from insoluble inclusion bodies by solubilization and refo...
Protein refolding is an important process to recover active recombinant proteins from inclusion bodi...
The production of recombinant proteins in the microbial host Escherichia coli often results in the f...
One of a major drawbacks correlated with expressing antibody fragments in bacterial cells is insolub...
E. coli is a convenient host in which to express recombinant proteins. The technology is available t...
Protein refolding is still a bottleneck for large-scale production of valuable proteins expressed as...
The efficient in vivo folding of many heterologous proteins is a major bottleneck of high level prod...
Overexpression of foreign proteins in Escherichia coli often leads to the formation of inclusion bod...
Biologically active proteins are useful for studying the biological functions of genes and for the d...
The rapid provision of purified native protein underpins both structural biology and the development...
Abstract Recent advances in generating active proteins through refolding of bacterial inclusion body...
Expression of recombinant proteins in Escherichia coli is normally accompanied by the formation of i...
The overexpression of recombinant proteins in Escherichia coli leads in most cases to their accumula...
Many recombinant eukaryotic proteins tend to form insoluble aggregates called inclusion bodies, espe...
Protein refolding is an important process to recover active recombinant proteins from inclusion bodi...
The expression and harvesting of proteins from insoluble inclusion bodies by solubilization and refo...
Protein refolding is an important process to recover active recombinant proteins from inclusion bodi...
The production of recombinant proteins in the microbial host Escherichia coli often results in the f...
One of a major drawbacks correlated with expressing antibody fragments in bacterial cells is insolub...
E. coli is a convenient host in which to express recombinant proteins. The technology is available t...
Protein refolding is still a bottleneck for large-scale production of valuable proteins expressed as...
The efficient in vivo folding of many heterologous proteins is a major bottleneck of high level prod...