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Membrane cofactor protein with different types of N-glycans can serve as measles virus receptor
Abstract:
Membrane cofactor protein (MCP) has been shown to act as a cellular receptor for measles virus. In previous binding studies we demonstrated a direct interaction between the measles virus H protein and MCP. The binding was shown to be independent of the O-glycans but dependent on the N-glycans of MCP. To elucidate the role of N-glycans for the receptor function of MCP, the effect of the glycosylation inhibitors tunicamycin (TM) and 1-deoxymannojirimycin (DMJ) was analyzed. TM which prevents N-glycosylation has been reported to inhibit the expression of functional measles virus receptors. Here we show that MCP lacking all N-glycans was detectable on the surface of Vero cells, although in a reduced amount. Therefore, the lack of receptor activity cannot be explained by intracellular degradation or defective transport. In the presence of DMJ, a mannosidase I inhibitor, MCP is synthesized with N-glycans of the high-mannose type in contrast to the complex oligosaccharides present on MCP of untreated cells. Both MCP with mannose-rich and MCP with complex N-glycans were recognized by measles virus H protein in an in vitro binding assay. They both could also serve as receptors for the infection of cultured Vero cells, arguing against a direct binding of virus to a carbohydrate moiety within the N-glycans of MCP. We propose that N-linked oligosaccharides are required to maintain a conformation-dependent receptor determinant of MCP.
Insights
Membrane cofactor protein (MCP) acts as a measles virus receptor, with N-glycans crucial for its function. N-linked oligosaccharides maintain MCP
Area of Science:
- Virology
- Cell Biology
- Glycobiology
Background:
- Membrane cofactor protein (MCP) serves as a cellular receptor for measles virus.
- Previous studies confirmed direct interaction between measles virus H protein and MCP, dependent on MCP's N-glycans.
Purpose of the Study:
- To investigate the role of N-glycans in MCP's receptor function for measles virus.
- To analyze the effects of glycosylation inhibitors tunicamycin (TM) and 1-deoxymannojirimycin (DMJ) on MCP.
Main Methods:
- Treatment of Vero cells expressing MCP with TM and DMJ.
- Analysis of MCP expression on cell surfaces.
- In vitro binding assays using measles virus H protein.
- Infection assays with cultured Vero cells.
Main Results:
- MCP lacking N-glycans was expressed on the cell surface, ruling out degradation or transport defects.
- DMJ treatment resulted in MCP with high-mannose type N-glycans.
- Both high-mannose and complex N-glycans on MCP supported measles virus H protein binding and cell infection.
Conclusions:
- N-linked oligosaccharides are essential for maintaining a conformation-dependent receptor determinant on MCP.
- The measles virus does not directly bind to a carbohydrate moiety within MCP's N-glycans.