Literature DB >> 30487280

Closing and Opening Holes in the Glycan Shield of HIV-1 Envelope Glycoprotein SOSIP Trimers Can Redirect the Neutralizing Antibody Response to the Newly Unmasked Epitopes.

Rajesh P Ringe1, Pavel Pugach1, Christopher A Cottrell2, Celia C LaBranche3, Gemma E Seabright4, Thomas J Ketas1, Gabriel Ozorowski2, Sonu Kumar2, Anna Schorcht5, Marit J van Gils5, Max Crispin4, David C Montefiori3, Ian A Wilson2,6, Andrew B Ward2, Rogier W Sanders1,5, P J Klasse7, John P Moore7.   

Abstract

In HIV-1 vaccine research, native-like, soluble envelope glycoprotein SOSIP trimers are widely used for immunizing animals. The epitopes of autologous neutralizing antibodies (NAbs) induced by the BG505 and B41 SOSIP trimers in rabbits and macaques have been mapped to a few holes in the glycan shields that cover most of the protein surfaces. For BG505 trimers, the dominant autologous NAb epitope in rabbits involves residues that line a cavity caused by the absence of a glycan at residue 241. Here, we blocked this epitope in BG505 SOSIPv4.1 trimer immunogens by knocking in an N-linked glycan at residue 241. We then opened holes elsewhere on the trimer by knocking out single N-linked glycans at residues 197, 234, 276, 332, and 355 and found that NAb responses induced by the 241-glycan-bearing BG505 trimers were frequently redirected to the newly opened sites. The strongest evidence for redirection of the NAb response to neoepitopes, through the opening and closing of glycan holes, was obtained from trimer immunogen groups with the highest occupancy of the N241 site. We also attempted to knock in the N289-glycan to block the sole autologous NAb epitope on the B41 SOSIP.v4.1 trimer. Although a retrospective analysis showed that the new N289-glycan site was substantially underoccupied, we found some evidence for redirection of the NAb response to a neoepitope when this site was knocked in and the N356-glycan site knocked out. In neither study, however, was redirection associated with increased neutralization of heterologous tier 2 viruses.IMPORTANCE Engineered SOSIP trimers mimic envelope-glycoprotein spikes, which stud the surface of HIV-1 particles and mediate viral entry into cells. When used for immunizing test animals, they elicit antibodies that neutralize resistant sequence-matched HIV-1 isolates. These neutralizing antibodies recognize epitopes in holes in the glycan shield that covers the trimer. Here, we added glycans to block the most immunogenic neutralization epitopes on BG505 and B41 SOSIP trimers. In addition, we removed selected other glycans to open new holes that might expose new immunogenic epitopes. We immunized rabbits with the various glycan-modified trimers and then dissected the specificities of the antibody responses. Thus, in principle, the antibody response might be diverted from one site to a more cross-reactive one, which would help in the induction of broadly neutralizing antibodies by HIV-1 vaccines based on envelope glycoproteins.
Copyright © 2019 American Society for Microbiology.

Entities:  

Keywords:  Env trimer; HIV-1; SOSIP; antibodies; epitope; glycan hole; immunization; neutralization

Mesh:

Substances:

Year:  2019        PMID: 30487280      PMCID: PMC6363999          DOI: 10.1128/JVI.01656-18

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


  67 in total

Review 1.  Intrinsic and extrinsic factors in protein antigenic structure.

Authors:  J A Berzofsky
Journal:  Science       Date:  1985-09-06       Impact factor: 47.728

2.  Tiered categorization of a diverse panel of HIV-1 Env pseudoviruses for assessment of neutralizing antibodies.

Authors:  Michael S Seaman; Holly Janes; Natalie Hawkins; Lauren E Grandpre; Colleen Devoy; Ayush Giri; Rory T Coffey; Linda Harris; Blake Wood; Marcus G Daniels; Tanmoy Bhattacharya; Alan Lapedes; Victoria R Polonis; Francine E McCutchan; Peter B Gilbert; Steve G Self; Bette T Korber; David C Montefiori; John R Mascola
Journal:  J Virol       Date:  2009-11-25       Impact factor: 5.103

Review 3.  How HIV-1 entry mechanism and broadly neutralizing antibodies guide structure-based vaccine design.

Authors:  Marie Pancera; Anita Changela; Peter D Kwong
Journal:  Curr Opin HIV AIDS       Date:  2017-05       Impact factor: 4.283

4.  Molecular Architecture of the Cleavage-Dependent Mannose Patch on a Soluble HIV-1 Envelope Glycoprotein Trimer.

Authors:  Anna-Janina Behrens; David J Harvey; Emilia Milne; Albert Cupo; Abhinav Kumar; Nicole Zitzmann; Weston B Struwe; John P Moore; Max Crispin
Journal:  J Virol       Date:  2017-01-03       Impact factor: 5.103

5.  Design and structure of two HIV-1 clade C SOSIP.664 trimers that increase the arsenal of native-like Env immunogens.

Authors:  Jean-Philippe Julien; Jeong Hyun Lee; Gabriel Ozorowski; Yuanzi Hua; Alba Torrents de la Peña; Steven W de Taeye; Travis Nieusma; Albert Cupo; Anila Yasmeen; Michael Golabek; Pavel Pugach; P J Klasse; John P Moore; Rogier W Sanders; Andrew B Ward; Ian A Wilson
Journal:  Proc Natl Acad Sci U S A       Date:  2015-09-08       Impact factor: 11.205

6.  Inhibition of virus attachment to CD4+ target cells is a major mechanism of T cell line-adapted HIV-1 neutralization.

Authors:  S Ugolini; I Mondor; P W Parren; D R Burton; S A Tilley; P J Klasse; Q J Sattentau
Journal:  J Exp Med       Date:  1997-10-20       Impact factor: 14.307

7.  Structure-based design of native-like HIV-1 envelope trimers to silence non-neutralizing epitopes and eliminate CD4 binding.

Authors:  Daniel W Kulp; Jon M Steichen; Matthias Pauthner; Xiaozhen Hu; Torben Schiffner; Alessia Liguori; Christopher A Cottrell; Colin Havenar-Daughton; Gabriel Ozorowski; Erik Georgeson; Oleksandr Kalyuzhniy; Jordan R Willis; Michael Kubitz; Yumiko Adachi; Samantha M Reiss; Mia Shin; Natalia de Val; Andrew B Ward; Shane Crotty; Dennis R Burton; William R Schief
Journal:  Nat Commun       Date:  2017-11-21       Impact factor: 14.919

8.  Design and crystal structure of a native-like HIV-1 envelope trimer that engages multiple broadly neutralizing antibody precursors in vivo.

Authors:  Max Medina-Ramírez; Fernando Garces; Amelia Escolano; Patrick Skog; Steven W de Taeye; Ivan Del Moral-Sanchez; Andrew T McGuire; Anila Yasmeen; Anna-Janina Behrens; Gabriel Ozorowski; Tom L G M van den Kerkhof; Natalia T Freund; Pia Dosenovic; Yuanzi Hua; Alexander D Gitlin; Albert Cupo; Patricia van der Woude; Michael Golabek; Kwinten Sliepen; Tanya Blane; Neeltje Kootstra; Mariëlle J van Breemen; Laura K Pritchard; Robyn L Stanfield; Max Crispin; Andrew B Ward; Leonidas Stamatatos; Per Johan Klasse; John P Moore; David Nemazee; Michel C Nussenzweig; Ian A Wilson; Rogier W Sanders
Journal:  J Exp Med       Date:  2017-08-28       Impact factor: 14.307

9.  HIV-1 VACCINES. HIV-1 neutralizing antibodies induced by native-like envelope trimers.

Authors:  Rogier W Sanders; Marit J van Gils; Ronald Derking; Devin Sok; Thomas J Ketas; Judith A Burger; Gabriel Ozorowski; Albert Cupo; Cassandra Simonich; Leslie Goo; Heather Arendt; Helen J Kim; Jeong Hyun Lee; Pavel Pugach; Melissa Williams; Gargi Debnath; Brian Moldt; Mariëlle J van Breemen; Gözde Isik; Max Medina-Ramírez; Jaap Willem Back; Wayne C Koff; Jean-Philippe Julien; Eva G Rakasz; Michael S Seaman; Miklos Guttman; Kelly K Lee; Per Johan Klasse; Celia LaBranche; William R Schief; Ian A Wilson; Julie Overbaugh; Dennis R Burton; Andrew B Ward; David C Montefiori; Hansi Dean; John P Moore
Journal:  Science       Date:  2015-06-18       Impact factor: 47.728

10.  Completeness of HIV-1 Envelope Glycan Shield at Transmission Determines Neutralization Breadth.

Authors:  Kshitij Wagh; Edward F Kreider; Yingying Li; Hannah J Barbian; Gerald H Learn; Elena Giorgi; Peter T Hraber; Timothy G Decker; Andrew G Smith; Marcos V Gondim; Lindsey Gillis; Jamie Wandzilak; Gwo-Yu Chuang; Reda Rawi; Fangping Cai; Pierre Pellegrino; Ian Williams; Julie Overbaugh; Feng Gao; Peter D Kwong; Barton F Haynes; George M Shaw; Persephone Borrow; Michael S Seaman; Beatrice H Hahn; Bette Korber
Journal:  Cell Rep       Date:  2018-10-23       Impact factor: 9.423

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  32 in total

1.  A Rare Mutation in an Infant-Derived HIV-1 Envelope Glycoprotein Alters Interprotomer Stability and Susceptibility to Broadly Neutralizing Antibodies Targeting the Trimer Apex.

Authors:  Nitesh Mishra; Shaifali Sharma; Ayushman Dobhal; Sanjeev Kumar; Himanshi Chawla; Ravinder Singh; Bimal Kumar Das; Sushil Kumar Kabra; Rakesh Lodha; Kalpana Luthra
Journal:  J Virol       Date:  2020-09-15       Impact factor: 5.103

Review 2.  Env Exceptionalism: Why Are HIV-1 Env Glycoproteins Atypical Immunogens?

Authors:  P J Klasse; Gabriel Ozorowski; Rogier W Sanders; John P Moore
Journal:  Cell Host Microbe       Date:  2020-04-08       Impact factor: 21.023

3.  A neutralizing antibody target in early HIV-1 infection was recapitulated in rhesus macaques immunized with the transmitted/founder envelope sequence.

Authors:  Sarah Welbourn; Srirupa Chakraborty; Jie E Yang; Anne S Gleinich; Sailaja Gangadhara; Salar Khan; Courtney Ferrebee; Bhrugu Yagnik; Samantha Burton; Tysheena Charles; S Abigail Smith; Danielle Williams; Rohini Mopuri; Amit A Upadhyay; Justin Thompson; Matt A Price; Shiyu Wang; Zhaohui Qin; Xiaoying Shen; LaTonya D Williams; Nathan Eisel; Tiffany Peters; Lu Zhang; William Kilembe; Etienne Karita; Georgia D Tomaras; Steven E Bosinger; Rama R Amara; Parastoo Azadi; Elizabeth R Wright; Sandrasegaram Gnanakaran; Cynthia A Derdeyn
Journal:  PLoS Pathog       Date:  2022-05-03       Impact factor: 6.823

Review 4.  Past, present, and future of Lyme disease vaccines: antigen engineering approaches and mechanistic insights.

Authors:  Wen-Hsiang Chen; Ulrich Strych; Maria Elena Bottazzi; Yi-Pin Lin
Journal:  Expert Rev Vaccines       Date:  2022-07-22       Impact factor: 5.683

5.  Antibody Responses Elicited by Immunization with BG505 Trimer Immune Complexes.

Authors:  Johannes S Gach; Kane J V Mara; Celia C LaBranche; Marit J van Gils; Laura E McCoy; P J Klasse; David C Montefiori; Rogier W Sanders; John P Moore; Donald N Forthal
Journal:  J Virol       Date:  2019-09-30       Impact factor: 5.103

6.  Illuminating the virus life cycle with single-molecule FRET imaging.

Authors:  Maolin Lu; Xiaochu Ma; Walther Mothes
Journal:  Adv Virus Res       Date:  2019-08-20       Impact factor: 9.937

7.  Structural and genetic convergence of HIV-1 neutralizing antibodies in vaccinated non-human primates.

Authors:  Fangping Cai; Wei-Hung Chen; Weimin Wu; Julia A Jones; Misook Choe; Neelakshi Gohain; Xiaoying Shen; Celia LaBranche; Amanda Eaton; Laura Sutherland; Esther M Lee; Giovanna E Hernandez; Nelson R Wu; Richard Scearce; Michael S Seaman; M Anthony Moody; Sampa Santra; Kevin Wiehe; Georgia D Tomaras; Kshitij Wagh; Bette Korber; Mattia Bonsignori; David C Montefiori; Barton F Haynes; Natalia de Val; M Gordon Joyce; Kevin O Saunders
Journal:  PLoS Pathog       Date:  2021-06-04       Impact factor: 7.464

8.  A diverse collection of B cells responded to HIV infection in infant BG505.

Authors:  Cassandra Simonich; Mackenzie M Shipley; Laura Doepker; Theodore Gobillot; Meghan Garrett; Evan M Cale; Brianna Hennessy; Hannah Itell; Vrasha Chohan; Nicole Doria-Rose; Ruth Nduati; Julie Overbaugh
Journal:  Cell Rep Med       Date:  2021-06-15

9.  N-Glycosylation of the SARS-CoV-2 Receptor Binding Domain Is Important for Functional Expression in Plants.

Authors:  Yun-Ji Shin; Julia König-Beihammer; Ulrike Vavra; Jennifer Schwestka; Nikolaus F Kienzl; Miriam Klausberger; Elisabeth Laurent; Clemens Grünwald-Gruber; Klemens Vierlinger; Manuela Hofner; Emmanuel Margolin; Andreas Weinhäusel; Eva Stöger; Lukas Mach; Richard Strasser
Journal:  Front Plant Sci       Date:  2021-06-15       Impact factor: 6.627

10.  Neutralizing Antibodies Induced by First-Generation gp41-Stabilized HIV-1 Envelope Trimers and Nanoparticles.

Authors:  Sonu Kumar; Xiaohe Lin; Timothy Ngo; Benjamin Shapero; Cindy Sou; Joel D Allen; Jeffrey Copps; Lei Zhang; Gabriel Ozorowski; Linling He; Max Crispin; Andrew B Ward; Ian A Wilson; Jiang Zhu
Journal:  mBio       Date:  2021-06-22       Impact factor: 7.867

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