Literature DB >> 11806944

Protonation and stability of the globular domain of influenza virus hemagglutinin.

Qiang Huang1, Robert Opitz, Ernst-Walter Knapp, Andreas Herrmann.   

Abstract

A partial dissociation of the HA1 subunits of influenza virus hemagglutinin (HA) is considered to be the initial step of conformational changes of the HA ectodomain leading to a membrane fusion active conformation (L. Godley, J. Pfeifer, D. Steinhauer, B. Ely, G. Shaw, R. Kaufman, E. Suchanek, C. Pabo, J.J. Skehel, D.C. Wiley, and S. Wharton, 1992, Cell 68:635-645; G.W. Kemble, D.L.Bodian, J. Rose, I.A. Wilson, and J.M. White, 1992, J. Virol. 66:4940-4950). Here, we explore a mechanism that provides an understanding of the physical and chemical basis for such dissociation and relies on two essential observations. First, based on the x-ray structure of HA from X31 (I.A. Wilson, J.J. Skehel, and D.C. Wiley, 1981, Nature 289:366-373), and by employing techniques of molecular modeling, we show that the protonation of the HA1 subunits is enhanced at the conditions known to trigger conformational changes of the HA ectodomain. Second, we found that the dependence of the calculated relative degree of protonation of the HA1 domain on temperature and pH is similar to that observed experimentally for the conformational change of HA assessed by proteinase K sensitivity. We suggest that at the pH-temperature conditions typical for the conformational change of HA and membrane fusion, dissociation of the HA1 subunits is caused by the enhanced protonation of the HA1 subunits leading to an increase in the positive net charge of these subunits and, in turn, to a weakened attraction between them.

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Year:  2002        PMID: 11806944      PMCID: PMC1301911          DOI: 10.1016/S0006-3495(02)75464-7

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  33 in total

1.  Electrostatic models for computing protonation and redox equilibria in proteins.

Authors:  G M Ullmann; E W Knapp
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Review 2.  Mechanisms of viral membrane fusion and its inhibition.

Authors:  D M Eckert; P S Kim
Journal:  Annu Rev Biochem       Date:  2001       Impact factor: 23.643

3.  Electron transfer between the quinones in the photosynthetic reaction center and its coupling to conformational changes.

Authors:  B Rabenstein; G M Ullmann; E W Knapp
Journal:  Biochemistry       Date:  2000-08-29       Impact factor: 3.162

4.  Structure of the haemagglutinin membrane glycoprotein of influenza virus at 3 A resolution.

Authors:  I A Wilson; J J Skehel; D C Wiley
Journal:  Nature       Date:  1981-01-29       Impact factor: 49.962

5.  Influenza viruses cause hemolysis and fusion of cells.

Authors:  R T Huang; R Rott; H D Klenk
Journal:  Virology       Date:  1981-04-15       Impact factor: 3.616

6.  Activation of influenza virus by acidic media causes hemolysis and fusion of erythrocytes.

Authors:  T Maeda; S Ohnishi
Journal:  FEBS Lett       Date:  1980-12-29       Impact factor: 4.124

7.  Structure of influenza haemagglutinin at neutral and at fusogenic pH by electron cryo-microscopy.

Authors:  C Böttcher; K Ludwig; A Herrmann; M van Heel; H Stark
Journal:  FEBS Lett       Date:  1999-12-17       Impact factor: 4.124

8.  Preparation of influenza virus subviral particles lacking the HA1 subunit of hemagglutinin: unmasking of cross-reactive HA2 determinants.

Authors:  P N Graves; J L Schulman; J F Young; P Palese
Journal:  Virology       Date:  1983-04-15       Impact factor: 3.616

9.  HIV-1 membrane fusion: targets of opportunity.

Authors:  R W Doms; J P Moore
Journal:  J Cell Biol       Date:  2000-10-16       Impact factor: 10.539

10.  Cell fusion by Semliki Forest, influenza, and vesicular stomatitis viruses.

Authors:  J White; K Matlin; A Helenius
Journal:  J Cell Biol       Date:  1981-06       Impact factor: 10.539

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  22 in total

1.  Thermal denaturation of influenza virus and its relationship to membrane fusion.

Authors:  Richard M Epand; Raquel F Epand
Journal:  Biochem J       Date:  2002-08-01       Impact factor: 3.857

2.  The position of QB in the photosynthetic reaction center depends on pH: a theoretical analysis of the proton uptake upon QB reduction.

Authors:  Antoine Taly; Pierre Sebban; Jeremy C Smith; G Matthias Ullmann
Journal:  Biophys J       Date:  2003-03       Impact factor: 4.033

3.  Calculating pH-dependent free energy of proteins by using Monte Carlo protonation probabilities of ionizable residues.

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Journal:  Protein Cell       Date:  2012-03-31       Impact factor: 14.870

4.  Bovine lactoferrin-derived peptides as novel broad-spectrum inhibitors of influenza virus.

Authors:  Maria Grazia Ammendolia; Mariangela Agamennone; Agostina Pietrantoni; Fabio Lannutti; Rosa Anna Siciliano; Beatrice De Giulio; Carla Amici; Fabiana Superti
Journal:  Pathog Glob Health       Date:  2012-03       Impact factor: 2.894

Review 5.  Modulation of the pH Stability of Influenza Virus Hemagglutinin: A Host Cell Adaptation Strategy.

Authors:  Santiago Di Lella; Andreas Herrmann; Caroline M Mair
Journal:  Biophys J       Date:  2016-06-07       Impact factor: 4.033

6.  Atomistic simulations indicate the functional loop-to-coiled-coil transition in influenza hemagglutinin is not downhill.

Authors:  Xingcheng Lin; Jeffrey K Noel; Qinghua Wang; Jianpeng Ma; José N Onuchic
Journal:  Proc Natl Acad Sci U S A       Date:  2018-07-16       Impact factor: 11.205

7.  A histidine residue of the influenza virus hemagglutinin controls the pH dependence of the conformational change mediating membrane fusion.

Authors:  Caroline M Mair; Tim Meyer; Katjana Schneider; Qiang Huang; Michael Veit; Andreas Herrmann
Journal:  J Virol       Date:  2014-09-03       Impact factor: 5.103

8.  Conserved neutralizing epitope at globular head of hemagglutinin in H3N2 influenza viruses.

Authors:  Yoshitaka Iba; Yoshifumi Fujii; Nobuko Ohshima; Tomomi Sumida; Ritsuko Kubota-Koketsu; Mariko Ikeda; Motoaki Wakiyama; Mikako Shirouzu; Jun Okada; Yoshinobu Okuno; Yoshikazu Kurosawa; Shigeyuki Yokoyama
Journal:  J Virol       Date:  2014-04-09       Impact factor: 5.103

Review 9.  Role of electrostatic repulsion in controlling pH-dependent conformational changes of viral fusion proteins.

Authors:  Joseph S Harrison; Chelsea D Higgins; Matthew J O'Meara; Jayne F Koellhoffer; Brian A Kuhlman; Jonathan R Lai
Journal:  Structure       Date:  2013-07-02       Impact factor: 5.006

10.  The mature avian leukosis virus subgroup A envelope glycoprotein is metastable, and refolding induced by the synergistic effects of receptor binding and low pH is coupled to infection.

Authors:  Jason G Smith; Walther Mothes; Stephen C Blacklow; James M Cunningham
Journal:  J Virol       Date:  2004-02       Impact factor: 5.103

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