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PMID: 9597545 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Stable expression of mammalian beta 1,4-galactosyltransferase extends the N-glycosylation pathway in insect cells.

Glycobiology ·Vol. 8 ·No. 5 ·1998-05-00 ·Pages 473-80

Hollister JR, Shaper JH, Jarvis DL

Abstract

An established lepidopteran insect cell line (Sf9) was cotransfected with expression plasmids encoding neomycin phosphotransferase and bovine beta 1,4-galactosyltransferase. Neomycin-resistant transformants were selected, assayed for beta 1,4-galactosyltransferase activity, and the transformant with the highest level of enzymatic activity was characterized. Southern blots indicated that this transformed Sf9 cell derivative contained multiple copies of the galactosyltransferase-encoding expression plasmid integrated at a single site in its genome. One-step growth curves showed that these cells supported normal levels of baculovirus replication. Baculovirus infection of the transformed cells stimulated beta 1,4-galactosyltransferase activity almost 5-fold by 12 h postinfection. This was followed by a gradual decline in activity, but the infected cells still had about as much activity as uninfected controls as late as 48 h after infection and they were able to produce a beta 1,4-galactosylated virion glycoprotein during infection. Infection of the transformed cells with a conventional recombinant baculovirus expression vector encoding human tissue plasminogen activator also resulted in the production of a galactosylated end-product. These results demonstrate that stable transformation can be used to add a functional mammalian glycosyltransferase to lepidopteran insect cells and extend their N-glycosylation pathway. Furthermore, stably-transformed insect cells can be used as modified hosts for conventional baculovirus expression vectors to produce foreign glycoproteins with "mammalianized" glycans which more closely resemble those produced by higher eucaryotes.

MeSH Terms
Animals Baculoviridae/physiology Cattle Cell Line Glycosylation Humans Mammals N-Acetyllactosamine Synthase/biosynthesis,metabolism Recombinant Proteins/biosynthesis,metabolism Spodoptera Tissue Plasminogen Activator/biosynthesis,metabolism Transfection Virus Replication
Chemicals
Recombinant Proteins N-Acetyllactosamine Synthase Tissue Plasminogen Activator
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hollister J R
Department of Entomology and Center for Advanced Invertebrate Molecular Sciences, Texas A&M University 77843, USA.
Shaper J H
Jarvis D L
Article Info
Journal
Glycobiology
Abbr.
Glycobiology
ISSN
0959-6658
Published
1998-05-00
Pages
473-80
Language
English
Region
England
NLM ID
9104124
Subset
IM
Grants
NIGMS NIH HHS · R01 GM049734 · United States
NIGMS NIH HHS · GM45799 · United States
NIGMS NIH HHS · GM49734 · United States
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