Streamlining Homogeneous Glycoprotein Production for Biophysical and Structural Applications by Targeted Cell Line Development
Author(s) -
Sonja Wilke,
Lothar Groebe,
Vitali Maffenbeier,
Volker Jäger,
Manfred Gossen,
Jörn Josewski,
Agathe Duda,
Lilia Polle,
Raymond J. Owens,
Dagmar Wirth,
Dirk W. Heinz,
Joop van den Heuvel,
Konrad Büssow
Publication year - 2011
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0027829
Subject(s) - glycoprotein , chinese hamster ovary cell , hek 293 cells , transfection , glycosylation , microbiology and biotechnology , cell culture , green fluorescent protein , recombinant dna , membrane protein , homogeneous , chemistry , biology , computational biology , biochemistry , gene , membrane , physics , genetics , thermodynamics
Studying the biophysical characteristics of glycosylated proteins and solving their three-dimensional structures requires homogeneous recombinant protein of high quality.We introduce here a new approach to produce glycoproteins in homogenous form with the well-established, glycosylation mutant CHO Lec3.2.8.1 cells. Using preparative cell sorting, stable, high-expressing GFP ‘master’ cell lines were generated that can be converted fast and reliably by targeted integration via Flp recombinase-mediated cassette exchange (RMCE) to produce any glycoprotein. Small-scale transient transfection of HEK293 cells was used to identify genetically engineered constructs suitable for constructing stable cell lines. Stable cell lines expressing 10 different proteins were established. The system was validated by expression, purification, deglycosylation and crystallization of the heavily glycosylated luminal domains of lysosome-associated membrane proteins (LAMP).
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