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A 45,000-M(r) glycoprotein in the Sendai virus envelope triggers virus-cell fusion
M Kumar1, M Q Hassan, S K Tyagi
1Department of Biochemistry, University of Delhi, New Delhi, India.
Abstract:
Sendai virus envelopes devoid of hemagglutinin-neuraminidase but containing the fusion protein (F-virosomes) were prepared. F-virosomes exhibited discernible serine protease activity at neutral pH. Electrophoretic analysis of the protein profile of the F-virosomes under nonreducing conditions, by both sodium dodecyl sulfate-polyacrylamide gel electrophoresis and isoelectric focusing, led to the identification of a previously unknown glycoprotein with a relative molecular weight of 45,000 (45K protein) associated with the F protein. The identity of the 45K protein, as distinct from F protein, was established by Western blot analysis with F- and 45K-specific antibodies. This 45K protein forms a nexus with the F protein through noncovalent hydrophobic interactions, as proved by its sensitivity to urea treatment, and it is essential for the proteolytic activity of the F-virosomes as well as for the fusion of the viral envelope with host cell membrane. N-terminal sequence analysis (first 11 amino acids) of this protein showed strong homology (> 90%) to flavivirus NS3 serine proteases but no similarity to any of the Sendai viral proteins. On the basis of the N-terminal sequence, oligonucleotides were designed corresponding to the sense and antisense DNA sequences. Dot blot hybridization and primer extension with these oligonucleotides with the viral and the host genome confirmed the host origin of this protein. Further, the limited proteolytic digestion of the target membrane resulted in significant inhibition of viral fusion with it. On the basis of these results, we postulate a model for the molecular mechanism of F protein-induced membrane fusion, which may provide a rationale for other paramyxoviruses.
Insights
A newly discovered host protein (45K) associated with Sendai virus fusion protein (F protein) is essential for viral serine protease activity and membrane fusion. This finding reveals a novel mechanism for paramyxovirus entry.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Sendai virus fusion protein (F protein) mediates viral entry into host cells.
- The precise molecular mechanism of F protein-mediated membrane fusion remains incompletely understood.
Purpose of the Study:
- To identify and characterize novel proteins associated with the Sendai virus F protein.
- To elucidate the role of associated proteins in viral fusion and proteolytic activity.
Main Methods:
- Preparation of F-virosomes and analysis of their serine protease activity.
- Electrophoretic techniques (SDS-PAGE, isoelectric focusing) and Western blot analysis for protein identification.
- N-terminal sequencing, DNA-templated oligonucleotide design, dot blot hybridization, and primer extension to determine protein origin.
- Limited proteolytic digestion assays to assess the role of the 45K protein in fusion.
Main Results:
- F-virosomes displayed serine protease activity at neutral pH.
- A novel 45,000 molecular weight glycoprotein (45K protein) was identified, associated with the F protein via noncovalent hydrophobic interactions.
- The 45K protein, homologous to flavivirus NS3 serine proteases, originates from the host genome.
- The 45K protein is crucial for both the proteolytic activity of F-virosomes and viral-host membrane fusion.
Conclusions:
- A host-derived 45K protein is a key component of the Sendai virus fusion machinery.
- This protein is essential for F protein-mediated membrane fusion and exhibits serine protease activity.
- A model for F protein-induced membrane fusion is proposed, potentially applicable to other paramyxoviruses.