Title of article :
Cell-free metabolic engineering promotes high-level production of bioactive Gaussia princeps luciferase
Author/Authors :
Goerke، نويسنده , , Aaron R. and Loening، نويسنده , , Andreas M. and Gambhir، نويسنده , , Sanjiv S. and Swartz، نويسنده , , James R.، نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2008
Pages :
14
From page :
187
To page :
200
Abstract :
Due to its small size and intense luminescent signal, Gaussia princeps luciferase (GLuc) is attractive as a potential imaging agent in both cell culture and small animal research models. However, recombinant GLuc production using in vivo techniques has only produced small quantities of active luciferase, likely due to five disulfide bonds being required for full activity. Cell-free biology provides the freedom to control both the catalyst and chemical compositions in biological reactions, and we capitalized on this to produce large amounts of highly active GLuc in cell-free reactions. Active yields were improved by mutating the cell extract source strain to reduce proteolysis, adjusting reaction conditions to enhance oxidative protein folding, further activating energy metabolism, and encouraging post-translational activation. This cell-free protein synthesis procedure produced 412 μg/mL of purified GLuc, relative to 5 μg/mL isolated for intracellular Escherichia coli expression. The cell-free product had a specific activity of 4.2×1024 photons/s/mol, the highest reported activity for any characterized luciferase.
Keywords :
luciferase , Post-translational activation , Gaussia princeps , In vivo protein expression , Cell-free protein synthesis
Journal title :
Metabolic Engineering
Serial Year :
2008
Journal title :
Metabolic Engineering
Record number :
1429792
Link To Document :
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