Literature DB >> 24352457

Mechanism of neutralization of herpes simplex virus by antibodies directed at the fusion domain of glycoprotein B.

Tina M Cairns1, Juan Fontana, Zhen-Yu Huang, J Charles Whitbeck, Doina Atanasiu, Samhita Rao, Spencer S Shelly, Huan Lou, Manuel Ponce de Leon, Alasdair C Steven, Roselyn J Eisenberg, Gary H Cohen.   

Abstract

UNLABELLED: Glycoprotein B (gB), the fusogen of herpes simplex virus (HSV), is a class III fusion protein with a trimeric ectodomain of known structure for the postfusion state. Seen by negative-staining electron microscopy, it presents as a rod with three lobes (base, middle, and crown). gB has four functional regions (FR), defined by the physical location of epitopes recognized by anti-gB neutralizing monoclonal antibodies (MAbs). Located in the base, FR1 contains two internal fusion loops (FLs) and is the site of gB-lipid interaction (the fusion domain). Many of the MAbs to FR1 are neutralizing, block cell-cell fusion, and prevent the association of gB with lipid, suggesting that these MAbs affect FL function. Here we characterize FR1 epitopes by using electron microscopy to visualize purified Fab-gB ectodomain complexes, thus confirming the locations of several epitopes and localizing those of MAbs DL16 and SS63. We also generated MAb-resistant viruses in order to localize the SS55 epitope precisely. Because none of the epitopes of our anti-FR1 MAbs mapped to the FLs, we hyperimmunized rabbits with FL1 or FL2 peptides to generate polyclonal antibodies (PAbs). While the anti-FL1 PAb failed to bind gB, the anti-FL2 PAb had neutralizing activity, implying that the FLs become exposed during virus entry. Unexpectedly, the anti-FL2 PAb (and the anti-FR1 MAbs) bound to liposome-associated gB, suggesting that their epitopes are accessible even when the FLs engage lipid. These studies provide possible mechanisms of action for HSV neutralization and insight into how gB FR1 contributes to viral fusion. IMPORTANCE: For herpesviruses, such as HSV, entry into a target cell involves transfer of the capsid-encased genome of the virus to the target cell after fusion of the lipid envelope of the virus with a lipid membrane of the host. Virus-encoded glycoproteins in the envelope are responsible for fusion. Antibodies to these glycoproteins are important biological tools, providing a way of examining how fusion works. Here we used electron microscopy and other techniques to study a panel of anti-gB antibodies. Some, with virus-neutralizing activity, impair gB-lipid association. We also generated a peptide antibody against one of the gB fusion loops; its properties provide insight into the way the fusion loops function as gB transits from its prefusion form to an active fusogen.

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Year:  2013        PMID: 24352457      PMCID: PMC3958082          DOI: 10.1128/JVI.03200-13

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


  61 in total

1.  Structure-based analysis of the herpes simplex virus glycoprotein D binding site present on herpesvirus entry mediator HveA (HVEM).

Authors:  Sarah A Connolly; Daniel J Landsburg; Andrea Carfi; Don C Wiley; Roselyn J Eisenberg; Gary H Cohen
Journal:  J Virol       Date:  2002-11       Impact factor: 5.103

2.  Specific association of glycoprotein B with lipid rafts during herpes simplex virus entry.

Authors:  Florent C Bender; J Charles Whitbeck; Manuel Ponce de Leon; Huan Lou; Roselyn J Eisenberg; Gary H Cohen
Journal:  J Virol       Date:  2003-09       Impact factor: 5.103

Review 3.  Herpes simplex virus: receptors and ligands for cell entry.

Authors:  Patricia G Spear
Journal:  Cell Microbiol       Date:  2004-05       Impact factor: 3.715

4.  Crystal structure of the low-pH form of the vesicular stomatitis virus glycoprotein G.

Authors:  Stéphane Roche; Stéphane Bressanelli; Félix A Rey; Yves Gaudin
Journal:  Science       Date:  2006-07-14       Impact factor: 47.728

5.  Dual split protein-based fusion assay reveals that mutations to herpes simplex virus (HSV) glycoprotein gB alter the kinetics of cell-cell fusion induced by HSV entry glycoproteins.

Authors:  Doina Atanasiu; Wan Ting Saw; John R Gallagher; Brian P Hannah; Zene Matsuda; J Charles Whitbeck; Gary H Cohen; Roselyn J Eisenberg
Journal:  J Virol       Date:  2013-08-14       Impact factor: 5.103

6.  Differential immunologic reactivity and processing of glycoproteins gA and gB of herpes simplex virus types 1 and 2 made in Vero and HEp-2 cells.

Authors:  L Pereira; D Dondero; B Norrild; B Roizman
Journal:  Proc Natl Acad Sci U S A       Date:  1981-08       Impact factor: 11.205

7.  Multimeric humanized varicella-zoster virus antibody fragments to gH neutralize virus while monomeric fragments do not.

Authors:  P D Drew; M T Moss; T J Pasieka; C Grose; W J Harris; A J R Porter
Journal:  J Gen Virol       Date:  2001-08       Impact factor: 3.891

8.  Cell fusion induced by herpes simplex virus glycoproteins gB, gD, and gH-gL requires a gD receptor but not necessarily heparan sulfate.

Authors:  P E Pertel; A Fridberg; M L Parish; P G Spear
Journal:  Virology       Date:  2001-01-05       Impact factor: 3.616

9.  Structure-based mutagenesis of herpes simplex virus glycoprotein D defines three critical regions at the gD-HveA/HVEM binding interface.

Authors:  Sarah A Connolly; Daniel J Landsburg; Andrea Carfi; Don C Wiley; Gary H Cohen; Roselyn J Eisenberg
Journal:  J Virol       Date:  2003-07       Impact factor: 5.103

Review 10.  Identifying epitopes of HIV-1 that induce protective antibodies.

Authors:  Susan Zolla-Pazner
Journal:  Nat Rev Immunol       Date:  2004-03       Impact factor: 53.106

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  35 in total

1.  Surface Plasmon Resonance Reveals Direct Binding of Herpes Simplex Virus Glycoproteins gH/gL to gD and Locates a gH/gL Binding Site on gD.

Authors:  Tina M Cairns; Noah T Ditto; Doina Atanasiu; Huan Lou; Benjamin D Brooks; Wan Ting Saw; Roselyn J Eisenberg; Gary H Cohen
Journal:  J Virol       Date:  2019-07-17       Impact factor: 5.103

2.  Using Antibodies and Mutants To Localize the Presumptive gH/gL Binding Site on Herpes Simplex Virus gD.

Authors:  Doina Atanasiu; Wan Ting Saw; Eric Lazear; J Charles Whitbeck; Tina M Cairns; Huan Lou; Roselyn J Eisenberg; Gary H Cohen
Journal:  J Virol       Date:  2018-11-27       Impact factor: 5.103

3.  Structural Insights into Reovirus σ1 Interactions with Two Neutralizing Antibodies.

Authors:  Melanie H Dietrich; Kristen M Ogden; Sarah P Katen; Kerstin Reiss; Danica M Sutherland; Robert H Carnahan; Matthew Goff; Tracy Cooper; Terence S Dermody; Thilo Stehle
Journal:  J Virol       Date:  2017-01-31       Impact factor: 5.103

4.  Dissection of the antibody response against herpes simplex virus glycoproteins in naturally infected humans.

Authors:  Tina M Cairns; Zhen-Yu Huang; J Charles Whitbeck; Manuel Ponce de Leon; Huan Lou; Anna Wald; Claude Krummenacher; Roselyn J Eisenberg; Gary H Cohen
Journal:  J Virol       Date:  2014-08-20       Impact factor: 5.103

5.  Characterization of Vesicular Stomatitis Virus Pseudotypes Bearing Essential Entry Glycoproteins gB, gD, gH, and gL of Herpes Simplex Virus 1.

Authors:  Henry B Rogalin; Ekaterina E Heldwein
Journal:  J Virol       Date:  2016-10-28       Impact factor: 5.103

6.  Cell Fusion Induced by a Fusion-Active Form of Human Cytomegalovirus Glycoprotein B (gB) Is Inhibited by Antibodies Directed at Antigenic Domain 5 in the Ectodomain of gB.

Authors:  Nina Reuter; Barbara Kropff; Julia Karin Schneiderbanger; Mira Alt; Adalbert Krawczyk; Christian Sinzger; Thomas H Winkler; William J Britt; Michael Mach; Marco Thomas
Journal:  J Virol       Date:  2020-08-31       Impact factor: 5.103

7.  Mildly Acidic pH Triggers an Irreversible Conformational Change in the Fusion Domain of Herpes Simplex Virus 1 Glycoprotein B and Inactivation of Viral Entry.

Authors:  Darin J Weed; Suzanne M Pritchard; Floricel Gonzalez; Hector C Aguilar; Anthony V Nicola
Journal:  J Virol       Date:  2017-02-14       Impact factor: 5.103

8.  The Neutralizing Linear Epitope of Human Herpesvirus 6A Glycoprotein B Does Not Affect Virus Infectivity.

Authors:  Aika Wakata; Satoshi Kanemoto; Huamin Tang; Akiko Kawabata; Mitsuhiro Nishimura; Chyntia Jasirwan; Nora Fahmy Mahmoud; Yasuko Mori
Journal:  J Virol       Date:  2018-02-12       Impact factor: 5.103

Review 9.  The structural basis of herpesvirus entry.

Authors:  Sarah A Connolly; Theodore S Jardetzky; Richard Longnecker
Journal:  Nat Rev Microbiol       Date:  2020-10-21       Impact factor: 60.633

Review 10.  Herpesvirus Entry into Host Cells Mediated by Endosomal Low pH.

Authors:  Anthony V Nicola
Journal:  Traffic       Date:  2016-05-24       Impact factor: 6.215

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