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Published on: August 17, 2018
Influenza A M2 recruits M1 to the plasma membrane: A fluorescence fluctuation microscopy study
Annett Petrich1, Valentin Dunsing1, Sara Bobone2
1University of Potsdam, Institute of Biochemistry and Biology, Potsdam, Germany.
Abstract:
Influenza A virus (IAV) is a respiratory pathogen that causes seasonal epidemics with significant mortality. One of the most abundant proteins in IAV particles is the matrix protein 1 (M1), which is essential for the virus structural stability. M1 organizes virion assembly and budding at the plasma membrane (PM), where it interacts with other viral components. The recruitment of M1 to the PM as well as its interaction with the other viral envelope proteins (hemagglutinin [HA], neuraminidase, matrix protein 2 [M2]) is controversially discussed in previous studies. Therefore, we used fluorescence fluctuation microscopy techniques (i.e., scanning fluorescence cross-correlation spectroscopy and number and brightness) to quantify the oligomeric state of M1 and its interactions with other viral proteins in co-transfected as well as infected cells. Our results indicate that M1 is recruited to the PM by M2, as a consequence of the strong interaction between the two proteins. In contrast, only a weak interaction between M1 and HA was observed. M1-HA interaction occurred only in the event that M1 was already bound to the PM. We therefore conclude that M2 initiates the assembly of IAV by recruiting M1 to the PM, possibly allowing its further interaction with other viral proteins.
Insights
Influenza A virus matrix protein 1 (M1) is recruited to the cell membrane by matrix protein 2 (M2), initiating virus assembly. M1 shows weak interaction with hemagglutinin (HA) only after binding to the membrane.
Area of Science:
- Virology
- Cell Biology
- Biophysics
Background:
- Influenza A virus (IAV) causes significant global mortality.
- Matrix protein 1 (M1) is crucial for IAV structural stability and assembly.
- M1's recruitment to the plasma membrane (PM) and interactions with viral envelope proteins are debated.
Purpose of the Study:
- To investigate the oligomeric state and interactions of IAV M1 protein.
- To clarify M1's recruitment mechanism to the PM and its interaction with HA and M2.
Main Methods:
- Utilized fluorescence fluctuation microscopy techniques.
- Employed scanning fluorescence cross-correlation spectroscopy (sFCS) and number and brightness (N&B) analysis.
- Quantified M1 oligomerization and interactions in transfected and infected cells.
Main Results:
- M1 is recruited to the PM via a strong interaction with M2.
- A weak interaction between M1 and hemagglutinin (HA) was observed.
- M1-HA interaction occurs only when M1 is already PM-bound.
Conclusions:
- M2 initiates IAV assembly by recruiting M1 to the PM.
- This recruitment facilitates subsequent interactions with other viral proteins.
- Findings clarify the early stages of IAV assembly at the host cell membrane.

