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Journal article

A versatile selection system for folding competent proteins using genetic complementation in a eukaryotic host

From

Department of Systems Biology, Technical University of Denmark1

Center for Microbial Biotechnology, Department of Systems Biology, Technical University of Denmark2

Recombinant expression of native or modified eukaryotic proteins is pivotal for structural and functional studies and for industrial and pharmaceutical production of proteins. However, it is often impeded by the lack of proper folding. Here, we present a stringent and broadly applicable eukaryotic in vivo selection system for folded proteins.

It is based on genetic complementation of the Schizosaccharomyces pombe growth marker gene invertase fused C-terminally to a protein library. The fusion proteins are directed to the secretion system, utilizing the ability of the eukaryotic protein quality-control systems to retain misfolded proteins in the ER and redirect them for cytosolic degradation, thereby only allowing folded proteins to reach the cell surface.

Accordingly, the folding potential of the tested protein determines the ability of autotrophic colony growth. This system was successfully demonstrated using a complex insertion mutant library of TNF-alpha, from which different folding competent mutant proteins were uncovered.

Language: English
Publisher: Wiley Subscription Services, Inc., A Wiley Company
Year: 2010
Pages: 579-592
ISSN: 1469896x , 13595040 and 09618368
Types: Journal article
DOI: 10.1002/pro.337
ORCIDs: Mortensen, Uffe Hasbro

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