Molecular Mechanisms behind Conformational Transitions of the Influenza Virus Hemagglutinin Membrane Anchor.


Journal

The journal of physical chemistry. B
ISSN: 1520-5207
Titre abrégé: J Phys Chem B
Pays: United States
ID NLM: 101157530

Informations de publication

Date de publication:
09 11 2023
Historique:
medline: 10 11 2023
pubmed: 25 10 2023
entrez: 25 10 2023
Statut: ppublish

Résumé

Membrane fusion is a fundamental process that is exploited by enveloped viruses to enter host cells. In the case of the influenza virus, fusion is facilitated by the trimeric viral hemagglutinin protein (HA). So far, major focus has been put on its N-terminal fusion peptides, which are directly responsible for fusion initiation. A growing body of evidence points also to a significant functional role of the HA C-terminal domain, which however remains incompletely understood. Our computational study aimed to elucidate the structural and functional interdependencies within the HA C-terminal region encompassing the transmembrane domain (TMD) and the cytoplasmic tail (CT). In particular, we were interested in the conformational shift of the TMD in response to varying cholesterol concentration in the viral membrane and in its modulation by the presence of CT. Using free-energy calculations based on atomistic molecular dynamics simulations, we characterized transitions between straight and tilted metastable TMD configurations under varying conditions. We found that the presence of CT is essential for achieving a stable, highly tilted TMD configuration. As we demonstrate, such a configuration of HA membrane anchor likely supports the tilting motion of its ectodomain, which needs to be executed during membrane fusion. This finding highlights the functional role of, so far, the relatively overlooked CT region.

Identifiants

pubmed: 37877534
doi: 10.1021/acs.jpcb.3c05257
pmc: PMC10641832
doi:

Substances chimiques

Hemagglutinins 0
Hemagglutinins, Viral 0
Hemagglutinin Glycoproteins, Influenza Virus 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

9450-9460

Références

J Virol. 2019 Jan 17;93(3):
pubmed: 30404808
Viruses. 2020 Dec 17;12(12):
pubmed: 33348831
Virology. 1996 Nov 15;225(2):255-66
pubmed: 8918911
Nature. 2020 Jul;583(7814):150-153
pubmed: 32461688
Heliyon. 2020 Jun 06;6(6):e04068
pubmed: 32529072
Adv Virus Res. 2002;58:1-28
pubmed: 12205777
J Phys Chem B. 2018 Jan 25;122(3):1185-1194
pubmed: 29323921
Biochim Biophys Acta. 2000 Nov 10;1469(3):159-95
pubmed: 11063882
J Infect. 2011 Oct;63(4):252-9
pubmed: 21632115
J Virol. 1998 May;72(5):3554-9
pubmed: 9557635
Biophys J. 2010 Jul 7;99(1):175-83
pubmed: 20655845
J Biol Chem. 2014 Dec 12;289(50):34978-89
pubmed: 25349209
Biochem Soc Trans. 2013 Feb 1;41(1):50-5
pubmed: 23356257
Nature. 1981 Jan 29;289(5796):366-73
pubmed: 7464906
J Chromatogr A. 2016 Sep 23;1465:117-25
pubmed: 27578410
Protein J. 2023 Aug;42(4):288-304
pubmed: 36952102
AIDS Rev. 2003 Jan-Mar;5(1):52-61
pubmed: 12875108
EMBO J. 1995 Nov 15;14(22):5514-23
pubmed: 8521808
Bioinformatics. 2000 Apr;16(4):404-5
pubmed: 10869041
Front Mol Biosci. 2022 Jan 27;9:826366
pubmed: 35155580
Virus Res. 2017 Jan 2;227:183-199
pubmed: 27773768
Proteins. 1987;2(2):130-52
pubmed: 3447171
J Cell Biol. 2012 Jan 23;196(2):213-21
pubmed: 22249292
Biochem J. 2015 Jan 15;465(2):305-14
pubmed: 25330796
Chem Sci. 2018 Feb 28;9(8):2340-2347
pubmed: 29520318
Proc Natl Acad Sci U S A. 2018 Oct 2;115(40):10112-10117
pubmed: 30224494
Viruses. 2012 Jul;4(7):1144-68
pubmed: 22852045
Protein Sci. 2022 Jan;31(1):209-220
pubmed: 34716622
Biochem J. 2010 Jan 15;425(3):567-73
pubmed: 19888915
Semin Cell Dev Biol. 2016 Dec;60:78-88
pubmed: 27401120
J Mol Biol. 2018 Mar 2;430(5):594-601
pubmed: 29355500
Mol Membr Biol. 1999 Jan-Mar;16(1):3-9
pubmed: 10332732
Biochemistry. 2000 Jan 25;39(3):496-507
pubmed: 10642174
Chem Phys Lipids. 2013 Jan;166:45-54
pubmed: 23200791
J Virol. 1991 May;65(5):2491-500
pubmed: 1901916
Nat Commun. 2015 Jan 30;6:5984
pubmed: 25635869
Protein Cell. 2010 May;1(5):459-67
pubmed: 21203961
Traffic. 2016 Jun;17(6):593-614
pubmed: 26935856
J Virol. 2000 Sep;74(18):8709-19
pubmed: 10954572
FEBS J. 2022 Feb;289(4):861-882
pubmed: 33624421
J Chem Inf Model. 2012 Nov 26;52(11):3001-12
pubmed: 23101989
Viruses. 2015 Dec 08;7(12):6458-75
pubmed: 26670246
Protein Eng Des Sel. 2013 Sep;26(9):547-52
pubmed: 23873663
J Comput Chem. 2008 Aug;29(11):1859-65
pubmed: 18351591
Biophys J. 2015 Nov 3;109(9):1917-24
pubmed: 26536268
Protein Sci. 2018 Jan;27(1):112-128
pubmed: 28836357
PLoS Pathog. 2013;9(10):e1003657
pubmed: 24130481
Nature. 1994 Sep 1;371(6492):37-43
pubmed: 8072525
Nucleic Acids Res. 2015 Jul 1;43(W1):W389-94
pubmed: 25883141
Genome Res. 2004 Jun;14(6):1188-90
pubmed: 15173120
Biophys J. 2007 Apr 15;92(8):2819-30
pubmed: 17259270
Chemistry. 2016 May 17;22(21):7068-73
pubmed: 27072057
Nat Methods. 2010 Dec;7(12):1003-8
pubmed: 21037590
J Biomol Struct Dyn. 2022 Jul;40(10):4642-4661
pubmed: 33317396
J Virol. 2008 Sep;82(18):9288-92
pubmed: 18596092
Phys Rev Lett. 1989 Sep 18;63(12):1195-1198
pubmed: 10040500
J Virol. 2005 May;79(10):6449-58
pubmed: 15858028
Nucleic Acids Res. 2012 Jan;40(Database issue):D370-6
pubmed: 21890895
J Virol. 2016 Jul 11;90(15):6948-6962
pubmed: 27226364
Biophys J. 2011 Jan 5;100(1):90-7
pubmed: 21190660
PLoS Comput Biol. 2023 May 26;19(5):e1011174
pubmed: 37235589
Nucleic Acids Res. 2021 Jan 8;49(D1):D480-D489
pubmed: 33237286
Annu Rev Med. 2013;64:189-202
pubmed: 23327522
Chem Phys Lipids. 2015 Jan;185:109-28
pubmed: 25087882
Nat Methods. 2019 Aug;16(8):670-673
pubmed: 31363226
J Chem Theory Comput. 2011 Jul 12;7(7):2284-95
pubmed: 26606496
Biochemistry. 2001 Apr 10;40(14):4340-8
pubmed: 11284690
Nat Methods. 2017 Jan;14(1):71-73
pubmed: 27819658
J Chem Theory Comput. 2011 Feb 8;7(2):525-37
pubmed: 26596171
Proc Natl Acad Sci U S A. 2010 Jun 22;107(25):11341-6
pubmed: 20534508
J Mol Biol. 1990 Oct 5;215(3):403-10
pubmed: 2231712
Adv Virol. 2011;2011:370606
pubmed: 22312341
Biochemistry. 1999 Jul 27;38(30):9778-82
pubmed: 10423258
Virology. 1991 Jun;182(2):475-85
pubmed: 2024485
Virology. 2011 Mar 15;411(2):229-36
pubmed: 21237476
J Virol. 2005 Nov;79(21):13673-84
pubmed: 16227287

Auteurs

Michal Michalski (M)

Centre of New Technologies, University of Warsaw, 02-097 Warsaw, Poland.

Piotr Setny (P)

Centre of New Technologies, University of Warsaw, 02-097 Warsaw, Poland.

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Classifications MeSH