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Exploitation of GFP fusion proteins and stress avoidance as a generic strategy for the production of high quality recombinant proteins

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posted on 2010-01-08, 12:02 authored by Yanina Sevastsyanovich, Sara Alfasi, Tim Overton, Richard Hall, Jo Jones, Christopher Hewitt, Jeff Cole
A C-terminal green fluorescent protein (GFP) fusion to a model target protein, Escherichia coli CheY, was exploited both as a reporter of the accumulation of soluble recombinant protein, and to develop a generic approach to optimize protein yields. The rapid accumulation of CheY∷GFP expressed from a pET20 vector under the control of an isopropyl-β-d-thiogalactoside (IPTG)-inducible T7 RNA polymerase resulted not only in the well-documented growth arrest but also loss of culturability and overgrowth of the productive population using plasmid-deficient bacteria. The highest yields of soluble CheY∷GFP as judged from the fluorescence levels were achieved using very low concentrations of IPTG, which avoid growth arrest and loss of culturability postinduction. Optimal product yields were obtained with 8 μM IPTG, a concentration so low that insufficient T7 RNA polymerase accumulated to be detectable by Western blot analysis. The improved protocol was shown to be suitable for process scale-up and intensification. It is also applicable to the accumulation of an untagged heterologous protein, cytochrome c2 from Neisseria gonorrhoeae, which requires both secretion and extensive post-translational modification.

History

School

  • Aeronautical, Automotive, Chemical and Materials Engineering

Department

  • Chemical Engineering

Citation

SEVASTSYANOVICH, Y. ... et al, 2009. Exploitation of GFP fusion proteins and stress avoidance as a generic strategy for the production of high quality recombinant proteins. FEMS Microbiology Letters, 299 (1), pp. 86-94.

Publisher

© Federation of European Microbiological Societies / Blackwell Publishing Ltd

Version

  • SMUR (Submitted Manuscript Under Review)

Publication date

2009

Notes

This research letter was submitted for publication in the journal, FEMS Microbiology Letters and the definitive version is available from: http://www3.interscience.wiley.com/journal/118512081/home

ISSN

0378-1097;1574-6968

Language

  • en