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Updated: Apr 26, 2026

Generation and Assembly of Virus-Specific Nucleocapsids of the Respiratory Syncytial Virus
Published on: July 27, 2021
Paramyxovirus glycoprotein incorporation, assembly and budding: a three way dance for infectious particle production
Farah El Najjar1, Anthony P Schmitt2, Rebecca Ellis Dutch3
1Department of Molecular and Cellular Biochemistry, University of Kentucky College of Medicine, Lexington, KY 40536, USA. farah.najjar@uky.edu.
Abstract:
Paramyxoviruses are a family of negative sense RNA viruses whose members cause serious diseases in humans, such as measles virus, mumps virus and respiratory syncytial virus; and in animals, such as Newcastle disease virus and rinderpest virus. Paramyxovirus particles form by assembly of the viral matrix protein, the ribonucleoprotein complex and the surface glycoproteins at the plasma membrane of infected cells and subsequent viral budding. Two major glycoproteins expressed on the viral envelope, the attachment protein and the fusion protein, promote attachment of the virus to host cells and subsequent virus-cell membrane fusion. Incorporation of the surface glycoproteins into infectious progeny particles requires coordinated interplay between the three viral structural components, driven primarily by the matrix protein. In this review, we discuss recent progress in understanding the contributions of the matrix protein and glycoproteins in driving paramyxovirus assembly and budding while focusing on the viral protein interactions underlying this process and the intracellular trafficking pathways for targeting viral components to assembly sites. Differences in the mechanisms of particle production among the different family members will be highlighted throughout.
Insights
Paramyxoviruses assemble and bud from host cells through complex protein interactions. This review highlights matrix protein and glycoprotein roles in viral particle formation and trafficking.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Paramyxoviruses are negative-sense RNA viruses causing significant human and animal diseases.
- Viral particle formation involves matrix protein, ribonucleoprotein complex, and surface glycoproteins.
- Attachment and fusion glycoproteins mediate host cell entry.
Purpose of the Study:
- To review recent advances in understanding paramyxovirus assembly and budding.
- To focus on viral protein interactions driving these processes.
- To explore intracellular trafficking pathways for viral components.
Main Methods:
- Review of existing literature on paramyxovirus assembly and budding.
- Analysis of viral protein interactions.
- Examination of intracellular trafficking mechanisms.
Main Results:
- The matrix protein is crucial for coordinating viral component assembly and budding.
- Surface glycoproteins (attachment and fusion proteins) are essential for viral entry.
- Coordinated interplay between viral components drives progeny particle formation.
Conclusions:
- Understanding protein interactions and trafficking is key to paramyxovirus replication.
- Variations in particle production mechanisms exist among different paramyxoviruses.
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