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Host cell receptor binding by baculovirus GP64 and kinetics of virion entry
K L Hefferon1, A G Oomens, S A Monsma
1Boyce Thompson Institute, Cornell University, Tower Road, Ithaca, New York, 14853-1801, USA.
Abstract:
GP64 is the major envelope glycoprotein from budded virions of the baculoviruses Autographa californica multicapsid nucleopolyhedrovirus (AcMNPV) and Orgyia pseudotsugata multicapsid nucleopolyhedrovirus (OpMNPV). To examine the potential role of GP64 as a viral attachment protein in host cell receptor binding, we generated, overexpressed, and characterized a soluble form of the OpMNPV GP64 protein, GP64solOp. Assays for trimerization, sensitivity to proteinase K, and reduction by dithiothreitol suggested that GP64solOp was indistinguishable from the ectodomain of the wild-type OpMNPV GP64 protein. Virion binding to host cells was analyzed by incubating virions with cells at 4 degrees C in the presence or absence of competitors, using a single-cell infectivity assay to measure virion binding. Purified soluble GP64 (GP64solOp) competed with a recombinant AcMNPV marker virus for binding to host cells, similar to control competition with psoralen-inactivated wild-type AcMNPV and OpMNPV virions. A nonspecific competitor protein did not similarly inhibit virion binding. Thus specific competition by GP64solOp for virion binding suggests that the GP64 protein is a host cell receptor-binding protein. We also examined the kinetics of virion internalization into endosomes and virion release from endosomes by acid-triggered membrane fusion. Using a protease sensitivity assay to measure internalization of bound virions, we found that virions entered Spodoptera frugiperda Sf9 cells between 10 and 20 min after binding, with a half-time of approximately 12.5 min. We used the lysosomotropic reagent ammonium chloride to examine the kinetics of membrane fusion and nucleocapsid release from endosomes after membrane fusion. Ammonium chloride inhibition assays indicated that AcMNPV nucleocapsids were released from endosomes between 15 and 30 min after binding, with a half-time of approximately 25 min.
Insights
The baculovirus GP64 protein acts as a viral attachment protein, mediating host cell receptor binding. This study confirms GP64
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- GP64 is the primary envelope glycoprotein in budded baculoviruses.
- Its role in host cell attachment requires further investigation.
Purpose of the Study:
- To investigate the function of GP64 as a viral attachment protein.
- To characterize the binding kinetics of baculovirus virions to host cells.
Main Methods:
- Overexpression and characterization of soluble OpMNPV GP64 (GP64solOp).
- Virion binding assays using competition with GP64solOp.
- Protease sensitivity and ammonium chloride assays to study viral entry and fusion.
Main Results:
- Soluble GP64 (GP64solOp) specifically competed with baculoviruses for host cell binding.
- Virion internalization occurred within 10-20 minutes post-binding.
- Nucleocapsid release from endosomes happened between 15-30 minutes post-binding.
Conclusions:
- GP64 is a host cell receptor-binding protein.
- Baculovirus entry involves endosomal internalization and acid-triggered membrane fusion.