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Tuned Escherichia coli as a host for the expression of disulfide-rich proteins. | LitMetric

Tuned Escherichia coli as a host for the expression of disulfide-rich proteins.

Biotechnol J

Cátedra de Inmunología, Facultad de Química-Facultad de Ciencias, Instituto de Higiene, Universidad de la República, Montevideo, Uruguay.

Published: June 2011

AI Article Synopsis

  • Disulfide-bond formation is crucial for the proper folding and function of secreted proteins, which are valuable for biotechnological applications.
  • The text focuses on how Escherichia coli can be utilized to produce these proteins by maintaining redox balance and facilitating disulfide bond formation in the bacterial periplasm.
  • It also reviews strategies to optimize E. coli compartments for higher yields of functional recombinant proteins, providing examples of successfully produced disulfide-rich proteins like protease inhibitors.

Article Abstract

Disulfide-bond formation is a major post-translational modification and is essential for protein folding, stability, and function. This is especially true for secreted proteins, many of which possess great potential for biotechnological applications. Focusing on the use of Escherichia coli for the production of this class of proteins, we describe the mechanisms that maintain redox compartmentalization in the cell, with an emphasis on those that promote the formation and isomerization of disulfide bonds in the bacterial periplasm, while presenting parallel pathways in the eukaryotic endoplasmic reticulum. Based on these concepts, we review the use of E. coli as a cell factory for the production of heterologous disulfide-containing proteins using either peri- or cytoplasmic expression and, in particular, how these compartments can be tuned to improve the yield of correctly folded recombinant proteins. Finally, we describe a few examples of the production of small disulfide-rich proteins (protease inhibitors) to illustrate how soluble, active, and fully oxidized recombinants may be successfully obtained upon peri- or cytoplasmic expression in E. coli.

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Source
http://dx.doi.org/10.1002/biot.201000335DOI Listing

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