Literature DB >> 21985378

Spatial structure peculiarities of influenza A virus matrix M1 protein in an acidic solution that simulates the internal lysosomal medium.

Alexander Shishkov1, Elena Bogacheva, Natalia Fedorova, Alexander Ksenofontov, Gennadii Badun, Victor Radyukhin, Elena Lukashina, Marina Serebryakova, Alexey Dolgov, Alexey Chulichkov, Evgeny Dobrov, Lyudmila Baratova.   

Abstract

The structure of the C-terminal domain of the influenza virus A matrix M1 protein, for which X-ray diffraction data were still missing, was studied in acidic solution. Matrix M1 protein was bombarded with thermally-activated tritium atoms, and the resulting intramolecular distribution of the tritium label was analyzed to assess the steric accessibility of the amino acid residues in this protein. This technique revealed that interdomain loops and the C-terminal domain of the protein are the most accessible to labeling with tritium atoms. A model of the spatial arrangement of the C-terminal domain of matrix M1 protein was generated using rosetta software adjusted to the data obtained by tritium planigraphy experiments. This model suggests that the C-terminal domain is an almost flat layer with a three-α-helical structure. To explain the high level of tritium label incorporation into the C-terminal domain of the M1 protein in an acidic solution, we also used independent experimental approaches (CD spectroscopy, limited proteolysis and MALDI-TOF MS analysis of the proteolysis products, dynamic light scattering and analytical ultracentrifugation), as well as multiple computational algorithms, to analyse the intrinsic protein disorder. Taken together, the results obtained in the present study indicate that the C-terminal domain is weakly structured. We hypothesize that the specific 3D structural peculiarities of the M1 protein revealed in acidic pH solution allow the protein greater structural flexibility and enable it to interact effectively with the components of the host cell.
© 2011 The Authors Journal compilation © 2011 FEBS.

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Year:  2011        PMID: 21985378     DOI: 10.1111/j.1742-4658.2011.08392.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  11 in total

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3.  Mapping the phosphoproteome of influenza A and B viruses by mass spectrometry.

Authors:  Edward C Hutchinson; Eleanor M Denham; Benjamin Thomas; David C Trudgian; Svenja S Hester; Gabriela Ridlova; Ashley York; Lauren Turrell; Ervin Fodor
Journal:  PLoS Pathog       Date:  2012-11-08       Impact factor: 6.823

4.  Dissection of influenza A virus M1 protein: pH-dependent oligomerization of N-terminal domain and dimerization of C-terminal domain.

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Journal:  PLoS One       Date:  2012-05-24       Impact factor: 3.240

5.  Two polar residues within C-terminal domain of M1 are critical for the formation of influenza A Virions.

Authors:  Ke Zhang; Zhao Wang; Gui-Zhen Fan; Juan Wang; Shengyan Gao; Yun Li; Lei Sun; Chang-Cheng Yin; Wen-Jun Liu
Journal:  Cell Microbiol       Date:  2015-05-29       Impact factor: 3.715

6.  Structural analysis of influenza A virus matrix protein M1 and its self-assemblies at low pH.

Authors:  Eleonora V Shtykova; Lyudmila A Baratova; Natalia V Fedorova; Victor A Radyukhin; Alexander L Ksenofontov; Vladimir V Volkov; Alexander V Shishkov; Alexey A Dolgov; Liudmila A Shilova; Oleg V Batishchev; Cy M Jeffries; Dmitri I Svergun
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7.  Coupling high-throughput genetics with phylogenetic information reveals an epistatic interaction on the influenza A virus M segment.

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Authors:  Nancy Hom; Lauren Gentles; Jesse D Bloom; Kelly K Lee
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9.  Surface characterization of the thermal remodeling helical plant virus.

Authors:  Alexander L Ksenofontov; Natalia V Fedorova; Gennady A Badun; Marina V Serebryakova; Nikolai A Nikitin; Ekaterina A Evtushenko; Maria G Chernysheva; Elena N Bogacheva; Eugeny N Dobrov; Ludmila A Baratova; Joseph G Atabekov; Olga V Karpova
Journal:  PLoS One       Date:  2019-05-31       Impact factor: 3.240

10.  Influenza virus Matrix Protein M1 preserves its conformation with pH, changing multimerization state at the priming stage due to electrostatics.

Authors:  Eleonora V Shtykova; Liubov A Dadinova; Natalia V Fedorova; Andrey E Golanikov; Elena N Bogacheva; Alexander L Ksenofontov; Liudmila A Baratova; Liudmila A Shilova; Vsevolod Yu Tashkin; Timur R Galimzyanov; Cy M Jeffries; Dmitri I Svergun; Oleg V Batishchev
Journal:  Sci Rep       Date:  2017-12-01       Impact factor: 4.379

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