| Literature DB >> 20190762 |
Flavio Schwarz1, Wei Huang, Cishan Li, Benjamin L Schulz, Christian Lizak, Alessandro Palumbo, Shin Numao, Dario Neri, Markus Aebi, Lai-Xi Wang.
Abstract
We describe a new method for producing homogeneous eukaryotic N-glycoproteins. The method involves the engineering and functional transfer of the Campylobacter jejuni glycosylation machinery in Escherichia coli to express glycosylated proteins with the key GlcNAc-Asn linkage. The bacterial glycans were then trimmed and remodeled in vitro by enzymatic transglycosylation to fulfill a eukaryotic N-glycosylation. It provides a potentially general platform for producing eukaryotic N-glycoproteins.Entities:
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Year: 2010 PMID: 20190762 PMCID: PMC2842479 DOI: 10.1038/nchembio.314
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 15.040
Figure 1Schematic representation of the protein expression and glycosylation engineering system. The protein is expressed in E. coli and secreted to the periplasm via the Sec or Tat pathway. A tailored lipid-linked oligosaccharide having a GlcNAc at the reducing end is built, re-oriented to the periplasmic side of the inner membrane by the flippase PglK, and attached to the Asn-side chain of the protein by the oligosaccharyltransferase PglB. The N-glycan is trimmed by α-N-acetyl-galactosaminidase to give a GlcNAc-tagged glycoprotein. Finally endoglycosidase-catalyzed transglycosylation using pre-assembled N-glycan species as substrates gives rise to a homogenous pool of glycoproteins.
Figure 2Production of homogenous N-glycoproteins. (a-b) Immunoblot analysis of the AcrA protein expressed in E. coli SCM3 carrying the pACYC184 (lanes 1) or the pACYC(pgl2) plasmid (lanes 2). Proteins are detected with anti-sera against AcrA (a) or against the glycan (b). Numbers on the left of the gel frame show the electrophoretic mobility of the molecular weight marker (kDa). The number of the N-glycans present on the different glycoforms of AcrA is indicated at the right of the gel frames. (c-f) MS analysis of AcrA glycoforms: (c) doubly glycosylated AcrA expressed in E. coli; (d) [GlcNAc]2-AcrA; (e) [Man3GlcNAc]2-AcrA; (f) N-glycan released from the product. (g-h) Expression of eukaryotic glycoproteins in E. coli: (g) Purified CH2-GI was incubated with (lane 2) or without (lane 1) exo-α-N-acetyl-galactosaminidase to remove terminal GalNAc residues of the glycan. The resulting protein was analyzed by immunoblot, using anti-His antibody (top) or anti-glycan serum (bottom); (h) Purified F8 was incubated with (lanes 2) or without (lanes 1) exo-α-N-acetyl-galactosaminidase. The resulting protein was analyzed by Coomassie-stained SDS-PAGE (top), and immunoblot using anti-glycan serum (bottom). Numbers on the left of the gel frame show the electrophoretic mobility of the molecular weight marker (kDa).