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Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
Marburg virus inclusions: A virus-induced microcompartment and interface to multivesicular bodies and the late
Olga Dolnik1, Lea Stevermann1, Larissa Kolesnikova1
1Institut für Virologie, Philipps Universität Marburg, 35043 Marburg, Germany.
Abstract:
Filovirus infection of target cells leads to the formation of virally induced cytoplasmic inclusions that contain viral nucleocapsids at different stages of maturation. While the role of the inclusions has been unclear since the identification of Marburg and Ebola viruses, it recently became clear that the inclusions are the sites of viral replication, nucleocapsid formation and maturation. Live cell imaging analyses revealed that mature nucleocapsids are transported from inclusions to the filopodia, which represent the major budding sites. Moreover, inclusions recruit cellular proteins that have been shown to support the transport of nucleocapsids. For example, the tumor susceptibility gene 101 protein (Tsg101) interacts with a late domain motif in the nucleocapsid protein NP and recruits the actin-nucleation factor IQGAP1. Complexes of nucleocapsids together with Tsg101 and IQGAP1 are then co-transported along actin filaments. We detected additional proteins (Alix, Nedd4 and the AAA-type ATPase VPS4) of the endosomal sorting complex required for transport (ESCRT) that are recruited into inclusions. Together, the results suggest that nucleocapsids recruit the machinery that enhances viral budding at the plasma membrane. Furthermore, we identified Lamp1 as a marker of the late endosomal compartment in inclusions, while ER, Golgi, TGN and early endosomal markers were absent. In addition, we observed that LC3, a marker of autophagosomal membranes, was present in inclusions. The 3D structures of inclusions show an intricate structure that seems to accommodate an intimate cooperation between cellular and viral components with the intention to support viral transport and budding.
Insights
Filovirus inclusions are key sites for viral replication and maturation. These inclusions recruit cellular proteins to transport viral nucleocapsids for budding, aiding filovirus infection.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Filovirus infections cause cytoplasmic inclusions containing viral nucleocapsids.
- The precise role of these inclusions in filovirus replication and assembly remained unclear.
Purpose of the Study:
- To elucidate the function of filovirus-induced cytoplasmic inclusions.
- To investigate the mechanisms of viral nucleocapsid transport and budding.
Main Methods:
- Live cell imaging to track nucleocapsid transport.
- Co-immunoprecipitation and protein localization studies.
- 3D structural analysis of inclusions.
Main Results:
- Inclusions serve as sites for filovirus replication, nucleocapsid maturation, and assembly.
- Mature nucleocapsids are transported from inclusions to filopodia for budding.
- Cellular proteins, including Tsg101, IQGAP1, Alix, Nedd4, and VPS4 (ESCRT components), are recruited to inclusions to facilitate nucleocapsid transport.
- Lamp1 and LC3 are present in inclusions, suggesting late endosomal and autophagosomal involvement.
Conclusions:
- Filovirus inclusions are dynamic factories that recruit host cell machinery to promote viral replication, nucleocapsid maturation, and efficient budding.
- The intricate structure of inclusions facilitates cooperation between viral and cellular components for successful virus propagation.
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