Literature DB >> 25653452

Influenza hemagglutinin (HA) stem region mutations that stabilize or destabilize the structure of multiple HA subtypes.

Lauren Byrd-Leotis1, Summer E Galloway1, Evangeline Agbogu1, David A Steinhauer2.   

Abstract

UNLABELLED: Influenza A viruses enter host cells through endosomes, where acidification induces irreversible conformational changes of the viral hemagglutinin (HA) that drive the membrane fusion process. The prefusion conformation of the HA is metastable, and the pH of fusion can vary significantly among HA strains and subtypes. Furthermore, an accumulating body of evidence implicates HA stability properties as partial determinants of influenza host range, transmission phenotype, and pathogenic potential. Although previous studies have identified HA mutations that can affect HA stability, these have been limited to a small selection of HA strains and subtypes. Here we report a mutational analysis of HA stability utilizing a panel of expressed HAs representing a broad range of HA subtypes and strains, including avian representatives across the phylogenetic spectrum and several human strains. We focused on two highly conserved residues in the HA stem region: HA2 position 58, located at the membrane distal tip of the short helix of the hairpin loop structure, and HA2 position 112, located in the long helix in proximity to the fusion peptide. We demonstrate that a K58I mutation confers an acid-stable phenotype for nearly all HAs examined, whereas a D112G mutation consistently leads to elevated fusion pH. The results enhance our understanding of HA stability across multiple subtypes and provide an additional tool for risk assessment for circulating strains that may have other hallmarks of human adaptation. Furthermore, the K58I mutants, in particular, may be of interest for potential use in the development of vaccines with improved stability profiles. IMPORTANCE: The influenza A hemagglutinin glycoprotein (HA) mediates the receptor binding and membrane fusion functions that are essential for virus entry into host cells. While receptor binding has long been recognized for its role in host species specificity and transmission, membrane fusion and associated properties of HA stability have only recently been appreciated as potential determinants. We show here that mutations can be introduced at highly conserved positions to stabilize or destabilize the HA structure of multiple HA subtypes, expanding our knowledge base for this important phenotype. The practical implications of these findings extend to the field of vaccine design, since the HA mutations characterized here could potentially be utilized across a broad spectrum of influenza virus subtypes to improve the stability of vaccine strains or components.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 25653452      PMCID: PMC4442347          DOI: 10.1128/JVI.00057-15

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  71 in total

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Journal:  N Engl J Med       Date:  2005-09-29       Impact factor: 91.245

Review 3.  Mechanisms of acid and base secretion by the airway epithelium.

Authors:  Horst Fischer; Jonathan H Widdicombe
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4.  The pH of activation of the hemagglutinin protein regulates H5N1 influenza virus replication and pathogenesis in mice.

Authors:  Hassan Zaraket; Olga A Bridges; Charles J Russell
Journal:  J Virol       Date:  2013-02-28       Impact factor: 5.103

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Review 6.  Receptor binding and pH stability - how influenza A virus hemagglutinin affects host-specific virus infection.

Authors:  Caroline M Mair; Kai Ludwig; Andreas Herrmann; Christian Sieben
Journal:  Biochim Biophys Acta       Date:  2013-10-24

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Journal:  N Engl J Med       Date:  2013-04-11       Impact factor: 91.245

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10.  Pathogenesis and transmission of avian influenza A (H7N9) virus in ferrets and mice.

Authors:  Jessica A Belser; Kortney M Gustin; Melissa B Pearce; Taronna R Maines; Hui Zeng; Claudia Pappas; Xiangjie Sun; Paul J Carney; Julie M Villanueva; James Stevens; Jacqueline M Katz; Terrence M Tumpey
Journal:  Nature       Date:  2013-07-10       Impact factor: 49.962

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  22 in total

Review 1.  Modulation of the pH Stability of Influenza Virus Hemagglutinin: A Host Cell Adaptation Strategy.

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2.  Influenza vaccination and the 'diversity paradox'.

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Review 3.  Influenza Hemagglutinin Protein Stability, Activation, and Pandemic Risk.

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4.  Swine H1N1 Influenza Virus Variants with Enhanced Polymerase Activity and HA Stability Promote Airborne Transmission in Ferrets.

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5.  Intermonomer Interactions in Hemagglutinin Subunits HA1 and HA2 Affecting Hemagglutinin Stability and Influenza Virus Infectivity.

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6.  H1N1 Swine Influenza Viruses Differ from Avian Precursors by a Higher pH Optimum of Membrane Fusion.

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Review 7.  Hemagglutinin Stability and Its Impact on Influenza A Virus Infectivity, Pathogenicity, and Transmissibility in Avians, Mice, Swine, Seals, Ferrets, and Humans.

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Review 8.  Influenza Hemagglutinin Structures and Antibody Recognition.

Authors:  Nicholas C Wu; Ian A Wilson
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9.  Accurate Measurement of the Effects of All Amino-Acid Mutations on Influenza Hemagglutinin.

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Journal:  Viruses       Date:  2016-06-03       Impact factor: 5.048

10.  One health, multiple challenges: The inter-species transmission of influenza A virus.

Authors:  Kirsty R Short; Mathilde Richard; Josanne H Verhagen; Debby van Riel; Eefje J A Schrauwen; Judith M A van den Brand; Benjamin Mänz; Rogier Bodewes; Sander Herfst
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