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Updated: Jul 11, 2026

Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
Intracellular processing, glycosylation, and cell surface expression of human metapneumovirus attachment glycoprotein
Li Liu1, Nathalie Bastien, Yan Li
1Department of Medical Microbiology and Infectious Diseases, the University of Manitoba, Winnipeg, Manitoba, Canada.
Abstract:
The biosynthesis and posttranslational processing of human metapneumovirus attachment G glycoprotein were investigated. After pulse-labeling, the G protein accumulated as three species with molecular weights of 45,000, 50,000, and 53,000 (45K, 50K, and 53K, respectively). N-Glycosidase digestion indicated that these forms represent the unglycosylated precursor and N-glycosylated intermediate products, respectively. After an appropriate chase, these three naive forms were further processed to a mature 97K form. The presence of O-linked sugars in mature G protein was confirmed by O-glycanase digestion and lectin-binding assay using Arachis hypogaea (peanut agglutinin), an O-glycan-specific lectin. In addition, in the O-glycosylation-deficient cell line (CHO ldlD cell), the G protein could not be processed to the mature form unless the exogenous Gal and GalNAc were supplemented, which provided added evidence supporting the O-linked glycosylation of G protein. The maturation of G was completely blocked by monensin but was partially sensitive to brefeldin A (BFA), suggesting the O-linked glycosylation of G initiated in the trans-Golgi compartment and terminated in the trans-Golgi network. Enzymatic deglycosylation analysis confirmed that the BFA-G was a partial mature form containing N-linked oligosaccharides and various amounts of O-linked carbohydrate side chains. The expression of G protein at the cell surface could be detected by indirect immunofluorescence staining assay. Furthermore, cell surface immunoprecipitation displayed an efficient intracellular transport of G protein.
Insights
This study investigated human metapneumovirus G glycoprotein processing. O-linked glycosylation is crucial for G protein maturation and cell surface expression, occurring in the Golgi apparatus.
Area of Science:
- Virology
- Glycobiology
- Cell Biology
Background:
- Human metapneumovirus (hMPV) is a significant respiratory pathogen.
- The attachment G glycoprotein is critical for hMPV infection.
- Understanding hMPV G protein posttranslational modification is essential for antiviral strategies.
Purpose of the Study:
- To elucidate the biosynthesis and posttranslational processing of the hMPV attachment G glycoprotein.
- To determine the role of glycosylation in G protein maturation and cell surface expression.
Main Methods:
- Pulse-chase labeling and enzymatic deglycosylation (N-Glycosidase, O-glycanase).
- Lectin-binding assays using peanut agglutinin.
- Studies in O-glycosylation-deficient cell lines (CHO ldlD) with and without sugar supplementation.
- Inhibition studies using monensin and brefeldin A (BFA).
- Indirect immunofluorescence staining and cell surface immunoprecipitation.
Main Results:
- hMPV G protein undergoes sequential N- and O-linked glycosylation, yielding a mature 97K form.
- O-linked glycosylation, requiring Gal and GalNAc, is essential for maturation.
- Maturation initiates in the trans-Golgi and terminates in the trans-Golgi network.
- Cell surface expression and efficient intracellular transport of G protein were confirmed.
Conclusions:
- O-linked glycosylation is a key posttranslational modification for hMPV G protein maturation.
- The Golgi apparatus, specifically the trans-Golgi network, is the primary site for G protein O-glycosylation.
- These findings provide insights into hMPV replication and potential therapeutic targets.
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