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Updated: Dec 7, 2025

Subnanometer-resolution Structural Determination of Hemagglutinin from Cryo-electron Tomography of Influenza Viruses
Published on: November 7, 2025
Full-length three-dimensional structure of the influenza A virus M1 protein and its organization into a matrix layer
Lisa Selzer1, Zhaoming Su2,3, Grigore D Pintilie3
1Departments of Genetics Stanford University School of Medicine, Stanford, California, United States of America.
Abstract:
Matrix proteins are encoded by many enveloped viruses, including influenza viruses, herpes viruses, and coronaviruses. Underneath the viral envelope of influenza virus, matrix protein 1 (M1) forms an oligomeric layer critical for particle stability and pH-dependent RNA genome release. However, high-resolution structures of full-length monomeric M1 and the matrix layer have not been available, impeding antiviral targeting and understanding of the pH-dependent transitions involved in cell entry. Here, purification and extensive mutagenesis revealed protein-protein interfaces required for the formation of multilayered helical M1 oligomers similar to those observed in virions exposed to the low pH of cell entry. However, single-layered helical oligomers with biochemical and ultrastructural similarity to those found in infectious virions before cell entry were observed upon mutation of a single amino acid. The highly ordered structure of the single-layered oligomers and their likeness to the matrix layer of intact virions prompted structural analysis by cryo-electron microscopy (cryo-EM). The resulting 3.4-Å-resolution structure revealed the molecular details of M1 folding and its organization within the single-shelled matrix. The solution of the full-length M1 structure, the identification of critical assembly interfaces, and the development of M1 assembly assays with purified proteins are crucial advances for antiviral targeting of influenza viruses.
Insights
Researchers elucidated the structure of influenza virus matrix protein 1 (M1). This finding reveals critical assembly interfaces and aids in developing new antiviral strategies against influenza viruses.
Area of Science:
- Virology
- Structural Biology
- Biochemistry
Background:
- Matrix proteins are essential components of enveloped viruses, including influenza.
- Influenza virus matrix protein 1 (M1) underlies the viral envelope, crucial for particle stability and genome release.
- High-resolution structures of M1 and its oligomeric forms were previously unavailable, hindering antiviral development.
Purpose of the Study:
- To determine the high-resolution structure of full-length monomeric M1 and its oligomeric forms.
- To identify protein-protein interfaces essential for M1 oligomerization.
- To understand the pH-dependent transitions of M1 during viral entry.
Main Methods:
- Protein purification and extensive mutagenesis of influenza M1.
- Biochemical and ultrastructural analysis of M1 oligomers.
- Cryo-electron microscopy (cryo-EM) for high-resolution structural determination.
Main Results:
- Identified key protein-protein interfaces for M1 oligomer formation.
- Generated single-layered helical M1 oligomers resembling those in infectious virions.
- Determined the 3.4-Å-resolution cryo-EM structure of the M1 matrix layer.
Conclusions:
- The study provides the first high-resolution structure of full-length M1 and its matrix layer.
- Identified critical M1 assembly interfaces and developed M1 assembly assays.
- These findings are crucial for developing novel antiviral therapies targeting influenza viruses.
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