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Published on: December 21, 2019
Rabies virus matrix protein targets host actin cytoskeleton: a protein-protein interaction analysis
Fatemeh Zandi1,2, Vahid Khalaj1, Fatemeh Goshadrou2
1Biotechnology Research Center, Pasteur Institute of Iran, Tehran, 1316943551, Iran.
Abstract:
Multifunctional matrix protein (M) of rabies virus (RABV) plays essential roles in the pathogenesis of rabies infection. Identification of M protein interacting partners in target hosts could help to elucidate the biological pathways and molecular mechanisms involved in the pathogenesis of this virus. In this study, two-dimensional Far-western blotting (2D-Far-WB) technique was applied to find possible matrix protein partners in the rat brainstem. Recombinant RABV M was expressed in Pichia pastoris and was partially purified. Subsequently, 2D-Far-WB-determined six rat brainstem proteins interacted with recombinant M proteins that were identified by mass spectrometry. Functional annotation by gene ontology analysis determined these proteins were involved in the regulation of synaptic transmission processes, metabolic process and cell morphogenesis-cytoskeleton organization. The interaction of viral M protein with selected host proteins in mouse Neuro-2a cells infected with RABV was verified by super-resolution confocal microscopy. Molecular docking simulations also demonstrated the formation of RABV M complexes. However, further confirmation with co-immunoprecipitation was only successful for M-actin cytoplasmic 1 interaction. Our study revealed actin cytoplasmic 1 as a binding partner of M protein, which might have important role(s) in rabies pathogenesis.
Insights
Rabies virus matrix protein (M) interacts with host proteins, including actin cytoplasmic 1. This discovery aids understanding of rabies pathogenesis and viral infection mechanisms.
Area of Science:
- Virology
- Molecular Biology
- Neuroscience
Background:
- The rabies virus matrix protein (M) is crucial for rabies pathogenesis.
- Identifying host protein interactions with M can elucidate viral mechanisms.
Purpose of the Study:
- To identify host protein interactors of the rabies virus M protein in the rat brainstem.
- To understand the molecular pathways involved in rabies virus infection.
Main Methods:
- Recombinant rabies virus M protein expressed and purified.
- Two-dimensional Far-western blotting (2D-Far-WB) and mass spectrometry used for protein identification.
- Super-resolution confocal microscopy and molecular docking simulations for interaction verification.
Main Results:
- Six rat brainstem proteins were identified as potential M protein interactors.
- Functional annotation indicated involvement in synaptic transmission, metabolism, and cytoskeleton organization.
- Co-immunoprecipitation confirmed M protein interaction with actin cytoplasmic 1.
Conclusions:
- Actin cytoplasmic 1 is identified as a binding partner of the rabies virus M protein.
- This interaction may play a significant role in rabies pathogenesis.
- Further research into M protein-host interactions is warranted to understand rabies virus infection.
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