The production of recombinant membrane proteins for structural and functional studies remains technically challenging due to low levels of expression and the inherent instability of many membrane proteins once solubilized in detergents. A protocol is described that combines ligation independent cloning of membrane proteins as GFP fusions with expression in Escherichia coli detected by GFP fluorescence. This enables the construction and expression screening of multiple membrane protein/variants to identify candidates suitable for further investment of time and effort. The GFP reporter is used in a primary screen of expression by visualizing GFP fluorescence following SDS polyacrylamide gel electrophoresis (SDS-PAGE). Membrane proteins that s...
Overexpression of correctly folded membrane proteins is a fundamental prerequisite for functional an...
Despite many high-profile successes, recombinant membrane protein production remains a technical cha...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
The production of recombinant membrane proteins for structural and functional studies remains techni...
A major bottleneck in the characterization of membrane proteins is low yield of functional protein i...
The efficient production of membrane proteins in bacteria remains a major challenge. In this work, w...
The major barrier to the physical characterization and structure determination of membrane proteins ...
The verification of the protein content in membrane fractions after separation of Gram-negative bact...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
Optimizing conditions for the overexpression and purification of membrane proteins for functional an...
Escherichia coli is one of the most widely used expression hosts for membrane proteins. However, est...
Overexpression of membrane proteins in Escherichia coli frequently leads to the formation of aggrega...
An essential prerequisite for in vitro biochemical or structural studies is a construct that is amen...
Overexpression of correctly folded membrane proteins is a fundamental prerequisite for functional an...
Despite many high-profile successes, recombinant membrane protein production remains a technical cha...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
The production of recombinant membrane proteins for structural and functional studies remains techni...
A major bottleneck in the characterization of membrane proteins is low yield of functional protein i...
The efficient production of membrane proteins in bacteria remains a major challenge. In this work, w...
The major barrier to the physical characterization and structure determination of membrane proteins ...
The verification of the protein content in membrane fractions after separation of Gram-negative bact...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
Optimizing conditions for the overexpression and purification of membrane proteins for functional an...
Escherichia coli is one of the most widely used expression hosts for membrane proteins. However, est...
Overexpression of membrane proteins in Escherichia coli frequently leads to the formation of aggrega...
An essential prerequisite for in vitro biochemical or structural studies is a construct that is amen...
Overexpression of correctly folded membrane proteins is a fundamental prerequisite for functional an...
Despite many high-profile successes, recombinant membrane protein production remains a technical cha...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...