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Expression and initial structural insights from solid-state NMR of the M2 proton channel from influenza A virus
Changlin Tian1, Kurt Tobler, Robert A Lamb
1National High Magnetic Field Lab, Institute of Molecular Biophysics, and Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32310, USA.
Abstract:
The M2 protein from influenza A virus has been expressed, purified, and reconstituted into DMPC/DMPG liposomes. SDS-PAGE analysis of reconstituted M2 protein in DMPC/DMPG liposomes demonstrates a stable tetrameric preparation. Circular dichroism spectra of the intact M2 protein in detergent indicate 67% alpha-helix. The uniformly (15)N-labeled M2 protein and both (15)N-Val- and (15)N-Leu-labeled M2 protein have been expressed from defined M9 media. The (1)H-(15)N HSQC (heteronuclear single quantum correlation) solution NMR experiments have been performed on the amino acid specific labeled protein in 300 mM SDS-d(25) micelles, and the data indicate a homogeneous preparation. The reconstituted M2/DMPC/DMPG proteoliposomes were used for preparing uniformly aligned solid-state NMR samples for (15)N-(1)H dipolar/(15)N chemical shift correlation experiments. The spectra support a transmembrane helix in M2 protein having a tilt angle of approximate 25 degrees, quantitatively similar to results obtained on the isolated M2 transmembrane peptide reconstituted in DMPC bilayers (38 degrees ). In addition, the spectra suggest that the tetrameric protein forms a symmetric or at least pseudosymmetric bundle consistent with data obtained by other research groups based on electrophysiological measurements and substituted cysteine scanning mutagenesis experiments that characterize a tetrameric structure.
Insights
Influenza A virus M2 protein forms a stable tetramer with a transmembrane helix. Solid-state NMR reveals a similar structure and tilt angle to previous studies, confirming its bundle formation.
Area of Science:
- Structural biology
- Virology
- Biophysics
Background:
- The M2 protein of influenza A virus is a crucial ion channel.
- Understanding its structure is vital for developing antiviral strategies.
Purpose of the Study:
- To characterize the structure and assembly of the M2 protein.
- To investigate the M2 protein's transmembrane helix and tetrameric structure.
Main Methods:
- Protein expression and purification
- Liposome reconstitution
- SDS-PAGE
- Circular dichroism
- Solution and solid-state NMR spectroscopy
Main Results:
- Stable tetrameric M2 protein preparation reconstituted in liposomes.
- M2 protein exhibits 67% alpha-helix content.
- Solid-state NMR confirms a transmembrane helix with a ~25-degree tilt angle.
- NMR data suggest a symmetric or pseudosymmetric tetrameric bundle.
Conclusions:
- The M2 protein forms a stable tetrameric structure with a transmembrane helix.
- The structural findings are consistent with previous electrophysiological and mutagenesis studies.
- This study provides further insights into the M2 protein's structure and function.