Literature DB >> 23221565

2G12-expressing B cell lines may aid in HIV carbohydrate vaccine design strategies.

Katie J Doores1, Michael Huber, Khoa M Le, Sheng-Kai Wang, Colleen Doyle-Cooper, Anthony Cooper, Ralph Pantophlet, Chi-Huey Wong, David Nemazee, Dennis R Burton.   

Abstract

The highly conserved cluster of high-mannose glycans on the HIV-1 envelope glycoprotein, gp120, has been highlighted as a target for neutralizing antibodies. 2G12, the first HIV-1 antiglycan neutralizing antibody described, binds with an unusual domain-exchanged structure that creates a high-affinity multivalent binding surface. It is an interesting challenge for rational vaccine design to generate immunogens capable of eliciting domain-exchanged 2G12-like responses. We recently showed that di-mannose recognition by the variable domains of 2G12 is independent of domain exchange but that exchange is critical for virus neutralization. Carbohydrate-based immunogens aimed at inducing 2G12-like antibodies may need to drive both di-mannose recognition and domain exchange through interactions with B cell receptors. Here we assessed the ability of such immunogens to activate mouse B cell lines displaying domain-exchanged wild-type 2G12 (2G12 WT), a non-domain-exchanged Y-shaped variant (2G12 I19R), and germ line 2G12 (2G12 gl). We show that several immunogens, including heat-killed yeast and bacteria, can activate both 2G12 WT and 2G12 I19R B cells. However, only discrete clusters of high-mannose glycans, as on recombinant forms of the HIV-1 envelope trimer and oligodendrons, activate 2G12 WT B cells. Furthermore, no immunogen tested activated 2G12 gl cells. Our results support the hypothesis that in order to drive domain exchange of an antimannose antibody response, a boost with an immunogen displaying discrete clusters of high-mannose glycans not recognized by conventional Y-shaped antibodies will be required. Additionally, a molecule capable of activating 2G12 gl cells might also be required. The results highlight broadly neutralizing antibody-expressing mouse B cells as potentially useful tools for carbohydrate immunogen screening.

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Year:  2012        PMID: 23221565      PMCID: PMC3571453          DOI: 10.1128/JVI.02820-12

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


  40 in total

1.  Very few substitutions in a germ line antibody are required to initiate significant domain exchange.

Authors:  Michael Huber; Khoa M Le; Katie J Doores; Zara Fulton; Robyn L Stanfield; Ian A Wilson; Dennis R Burton
Journal:  J Virol       Date:  2010-08-11       Impact factor: 5.103

2.  Antibody 2G12 recognizes di-mannose equivalently in domain- and nondomain-exchanged forms but only binds the HIV-1 glycan shield if domain exchanged.

Authors:  Katie J Doores; Zara Fulton; Michael Huber; Ian A Wilson; Dennis R Burton
Journal:  J Virol       Date:  2010-08-11       Impact factor: 5.103

3.  Analysis of a clonal lineage of HIV-1 envelope V2/V3 conformational epitope-specific broadly neutralizing antibodies and their inferred unmutated common ancestors.

Authors:  Mattia Bonsignori; Kwan-Ki Hwang; Xi Chen; Chun-Yen Tsao; Lynn Morris; Elin Gray; Dawn J Marshall; John A Crump; Saidi H Kapiga; Noel E Sam; Faruk Sinangil; Marie Pancera; Yang Yongping; Baoshan Zhang; Jiang Zhu; Peter D Kwong; Sijy O'Dell; John R Mascola; Lan Wu; Gary J Nabel; Sanjay Phogat; Michael S Seaman; John F Whitesides; M Anthony Moody; Garnett Kelsoe; Xinzhen Yang; Joseph Sodroski; George M Shaw; David C Montefiori; Thomas B Kepler; Georgia D Tomaras; S Munir Alam; Hua-Xin Liao; Barton F Haynes
Journal:  J Virol       Date:  2011-07-27       Impact factor: 5.103

4.  Differential reactivity of germ line allelic variants of a broadly neutralizing HIV-1 antibody to a gp41 fusion intermediate conformation.

Authors:  S Munir Alam; Hua-Xin Liao; S Moses Dennison; Frederick Jaeger; Robert Parks; Kara Anasti; Andrew Foulger; Michele Donathan; Judith Lucas; Laurent Verkoczy; Nathan Nicely; Georgia D Tomaras; Garnett Kelsoe; Bing Chen; Thomas B Kepler; Barton F Haynes
Journal:  J Virol       Date:  2011-09-14       Impact factor: 5.103

5.  A bacterial lipooligosaccharide that naturally mimics the epitope of the HIV-neutralizing antibody 2G12 as a template for vaccine design.

Authors:  Brenda E Clark; Kate Auyeung; Eleonora Fregolino; Michelangelo Parrilli; Rosa Lanzetta; Cristina De Castro; Ralph Pantophlet
Journal:  Chem Biol       Date:  2012-02-24

6.  Structure of HIV-1 gp120 V1/V2 domain with broadly neutralizing antibody PG9.

Authors:  Jason S McLellan; Marie Pancera; Chris Carrico; Jason Gorman; Jean-Philippe Julien; Reza Khayat; Robert Louder; Robert Pejchal; Mallika Sastry; Kaifan Dai; Sijy O'Dell; Nikita Patel; Syed Shahzad-ul-Hussan; Yongping Yang; Baoshan Zhang; Tongqing Zhou; Jiang Zhu; Jeffrey C Boyington; Gwo-Yu Chuang; Devan Diwanji; Ivelin Georgiev; Young Do Kwon; Doyung Lee; Mark K Louder; Stephanie Moquin; Stephen D Schmidt; Zhi-Yong Yang; Mattia Bonsignori; John A Crump; Saidi H Kapiga; Noel E Sam; Barton F Haynes; Dennis R Burton; Wayne C Koff; Laura M Walker; Sanjay Phogat; Richard Wyatt; Jared Orwenyo; Lai-Xi Wang; James Arthos; Carole A Bewley; John R Mascola; Gary J Nabel; William R Schief; Andrew B Ward; Ian A Wilson; Peter D Kwong
Journal:  Nature       Date:  2011-11-23       Impact factor: 49.962

7.  Structural insights into parallel strategies for germline antibody recognition of lipopolysaccharide from Chlamydia.

Authors:  Dylan W Evans; Sven Müller-Loennies; Cory L Brooks; Lore Brade; Paul Kosma; Helmut Brade; Stephen V Evans
Journal:  Glycobiology       Date:  2011-05-04       Impact factor: 4.313

8.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.

Authors:  Robert Pejchal; Katie J Doores; Laura M Walker; Reza Khayat; Po-Ssu Huang; Sheng-Kai Wang; Robyn L Stanfield; Jean-Philippe Julien; Alejandra Ramos; Max Crispin; Rafael Depetris; Umesh Katpally; Andre Marozsan; Albert Cupo; Sebastien Maloveste; Yan Liu; Ryan McBride; Yukishige Ito; Rogier W Sanders; Cassandra Ogohara; James C Paulson; Ten Feizi; Christopher N Scanlan; Chi-Huey Wong; John P Moore; William C Olson; Andrew B Ward; Pascal Poignard; William R Schief; Dennis R Burton; Ian A Wilson
Journal:  Science       Date:  2011-10-13       Impact factor: 47.728

9.  Anti-HIV B Cell lines as candidate vaccine biosensors.

Authors:  Takayuki Ota; Colleen Doyle-Cooper; Anthony B Cooper; Michael Huber; Emilia Falkowska; Katherine J Doores; Lars Hangartner; Khoa Le; Devin Sok; Joseph Jardine; Jeffrey Lifson; Xueling Wu; John R Mascola; Pascal Poignard; James M Binley; Bimal K Chakrabarti; William R Schief; Richard T Wyatt; Dennis R Burton; David Nemazee
Journal:  J Immunol       Date:  2012-10-12       Impact factor: 5.422

10.  Broad neutralization coverage of HIV by multiple highly potent antibodies.

Authors:  Laura M Walker; Michael Huber; Katie J Doores; Emilia Falkowska; Robert Pejchal; Jean-Philippe Julien; Sheng-Kai Wang; Alejandra Ramos; Po-Ying Chan-Hui; Matthew Moyle; Jennifer L Mitcham; Phillip W Hammond; Ole A Olsen; Pham Phung; Steven Fling; Chi-Huey Wong; Sanjay Phogat; Terri Wrin; Melissa D Simek; Wayne C Koff; Ian A Wilson; Dennis R Burton; Pascal Poignard
Journal:  Nature       Date:  2011-09-22       Impact factor: 49.962

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  10 in total

1.  Diverse recombinant HIV-1 Envs fail to activate B cells expressing the germline B cell receptors of the broadly neutralizing anti-HIV-1 antibodies PG9 and 447-52D.

Authors:  Andrew T McGuire; Jolene A Glenn; Adriana Lippy; Leonidas Stamatatos
Journal:  J Virol       Date:  2013-12-18       Impact factor: 5.103

2.  Crystal structure of the HIV neutralizing antibody 2G12 in complex with a bacterial oligosaccharide analog of mammalian oligomannose.

Authors:  Robyn L Stanfield; Cristina De Castro; Alberto M Marzaioli; Ian A Wilson; Ralph Pantophlet
Journal:  Glycobiology       Date:  2014-11-07       Impact factor: 4.313

3.  HIV antibodies. Antigen modification regulates competition of broad and narrow neutralizing HIV antibodies.

Authors:  Andrew T McGuire; Anita M Dreyer; Sara Carbonetti; Adriana Lippy; Jolene Glenn; Johannes F Scheid; Hugo Mouquet; Leonidas Stamatatos
Journal:  Science       Date:  2014-12-12       Impact factor: 47.728

4.  B Cells Carrying Antigen Receptors Against Microbes as Tools for Vaccine Discovery and Design.

Authors:  Deepika Bhullar; David Nemazee
Journal:  Curr Top Microbiol Immunol       Date:  2019-03-28       Impact factor: 4.291

5.  Fab-dimerized glycan-reactive antibodies are a structural category of natural antibodies.

Authors:  Wilton B Williams; R Ryan Meyerhoff; R J Edwards; Hui Li; Kartik Manne; Nathan I Nicely; Rory Henderson; Ye Zhou; Katarzyna Janowska; Katayoun Mansouri; Sophie Gobeil; Tyler Evangelous; Bhavna Hora; Madison Berry; A Yousef Abuahmad; Jordan Sprenz; Margaret Deyton; Victoria Stalls; Megan Kopp; Allen L Hsu; Mario J Borgnia; Guillaume B E Stewart-Jones; Matthew S Lee; Naomi Bronkema; M Anthony Moody; Kevin Wiehe; Todd Bradley; S Munir Alam; Robert J Parks; Andrew Foulger; Thomas Oguin; Gregory D Sempowski; Mattia Bonsignori; Celia C LaBranche; David C Montefiori; Michael Seaman; Sampa Santra; John Perfect; Joseph R Francica; Geoffrey M Lynn; Baptiste Aussedat; William E Walkowicz; Richard Laga; Garnett Kelsoe; Kevin O Saunders; Daniela Fera; Peter D Kwong; Robert A Seder; Alberto Bartesaghi; George M Shaw; Priyamvada Acharya; Barton F Haynes
Journal:  Cell       Date:  2021-05-20       Impact factor: 41.582

6.  High temperature SELMA: evolution of DNA-supported oligomannose clusters which are tightly recognized by HIV bnAb 2G12.

Authors:  J Sebastian Temme; Iain S MacPherson; John F DeCourcey; Isaac J Krauss
Journal:  J Am Chem Soc       Date:  2014-01-23       Impact factor: 15.419

Review 7.  Protein and Glycan Mimicry in HIV Vaccine Design.

Authors:  Gemma E Seabright; Katie J Doores; Dennis R Burton; Max Crispin
Journal:  J Mol Biol       Date:  2019-04-24       Impact factor: 5.469

8.  Networks of HIV-1 Envelope Glycans Maintain Antibody Epitopes in the Face of Glycan Additions and Deletions.

Authors:  Gemma E Seabright; Christopher A Cottrell; Marit J van Gils; Alessio D'addabbo; David J Harvey; Anna-Janina Behrens; Joel D Allen; Yasunori Watanabe; Nicole Scaringi; Thomas M Polveroni; Allison Maker; Snezana Vasiljevic; Natalia de Val; Rogier W Sanders; Andrew B Ward; Max Crispin
Journal:  Structure       Date:  2020-05-19       Impact factor: 5.006

Review 9.  Glycans in Virus-Host Interactions: A Structural Perspective.

Authors:  Nathaniel L Miller; Thomas Clark; Rahul Raman; Ram Sasisekharan
Journal:  Front Mol Biosci       Date:  2021-06-07

10.  Synthesis of a Pentasaccharide Fragment Related to the Inner Core Region of Rhizobial and Agrobacterial Lipopolysaccharides.

Authors:  Nino Trattnig; Jean-Baptiste Farcet; Philipp Gritsch; Anna Christler; Ralph Pantophlet; Paul Kosma
Journal:  J Org Chem       Date:  2017-10-26       Impact factor: 4.354

  10 in total

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