Literature DB >> 24982157

Affinity maturation in an HIV broadly neutralizing B-cell lineage through reorientation of variable domains.

Daniela Fera1, Aaron G Schmidt1, Barton F Haynes2, Feng Gao2, Hua-Xin Liao2, Thomas B Kepler3, Stephen C Harrison4.   

Abstract

Rapidly evolving pathogens, such as human immunodeficiency and influenza viruses, escape immune defenses provided by most vaccine-induced antibodies. Proposed strategies to elicit broadly neutralizing antibodies require a deeper understanding of antibody affinity maturation and evolution of the immune response to vaccination or infection. In HIV-infected individuals, viruses and B cells evolve together, creating a virus-antibody "arms race." Analysis of samples from an individual designated CH505 has illustrated the interplay between an antibody lineage, CH103, and autologous viruses at various time points. The CH103 antibodies, relatively broad in their neutralization spectrum, interact with the CD4 binding site of gp120, with a contact dominated by CDRH3. We show by analyzing structures of progenitor and intermediate antibodies and by correlating them with measurements of binding to various gp120s that there was a shift in the relative orientation of the light- and heavy-chain variable domains during evolution of the CH103 lineage. We further show that mutations leading to this conformational shift probably occurred in response to insertions in variable loop 5 (V5) of the HIV envelope. The shift displaced the tips of the light chain away from contact with V5, making room for the inserted residues, which had allowed escape from neutralization by the progenitor antibody. These results, which document the selective mechanism underlying this example of a virus-antibody arms race, illustrate the functional significance of affinity maturation by mutation outside the complementarity determining region surface of the antibody molecule.

Entities:  

Keywords:  HIV gp120; antibody structure; protein evolution; somatic hypermutation

Mesh:

Substances:

Year:  2014        PMID: 24982157      PMCID: PMC4104889          DOI: 10.1073/pnas.1409954111

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  34 in total

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2.  Structural basis for germ-line gene usage of a potent class of antibodies targeting the CD4-binding site of HIV-1 gp120.

Authors:  Anthony P West; Ron Diskin; Michel C Nussenzweig; Pamela J Bjorkman
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Authors:  Aaron G Schmidt; Huafeng Xu; Amir R Khan; Timothy O'Donnell; Surender Khurana; Lisa R King; Jody Manischewitz; Hana Golding; Pirada Suphaphiphat; Andrea Carfi; Ethan C Settembre; Philip R Dormitzer; Thomas B Kepler; Ruijun Zhang; M Anthony Moody; Barton F Haynes; Hua-Xin Liao; David E Shaw; Stephen C Harrison
Journal:  Proc Natl Acad Sci U S A       Date:  2012-11-21       Impact factor: 11.205

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Journal:  PLoS Pathog       Date:  2010-11-18       Impact factor: 6.823

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  45 in total

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Journal:  Science       Date:  2016-02-25       Impact factor: 47.728

Review 3.  What Is the Predictive Value of Animal Models for Vaccine Efficacy in Humans? The Importance of Bridging Studies and Species-Independent Correlates of Protection.

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4.  Optimizing immunization protocols to elicit broadly neutralizing antibodies.

Authors:  Kayla G Sprenger; Joy E Louveau; Pranav M Murugan; Arup K Chakraborty
Journal:  Proc Natl Acad Sci U S A       Date:  2020-08-03       Impact factor: 11.205

5.  Somatic Hypermutation-Induced Changes in the Structure and Dynamics of HIV-1 Broadly Neutralizing Antibodies.

Authors:  Thaddeus M Davenport; Jason Gorman; M Gordon Joyce; Tongqing Zhou; Cinque Soto; Miklos Guttman; Stephanie Moquin; Yongping Yang; Baoshan Zhang; Nicole A Doria-Rose; Shiu-Lok Hu; John R Mascola; Peter D Kwong; Kelly K Lee
Journal:  Structure       Date:  2016-07-28       Impact factor: 5.006

6.  Structural Constraints of Vaccine-Induced Tier-2 Autologous HIV Neutralizing Antibodies Targeting the Receptor-Binding Site.

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7.  Staged induction of HIV-1 glycan-dependent broadly neutralizing antibodies.

Authors:  Mattia Bonsignori; Edward F Kreider; Daniela Fera; R Ryan Meyerhoff; Todd Bradley; Kevin Wiehe; S Munir Alam; Baptiste Aussedat; William E Walkowicz; Kwan-Ki Hwang; Kevin O Saunders; Ruijun Zhang; Morgan A Gladden; Anthony Monroe; Amit Kumar; Shi-Mao Xia; Melissa Cooper; Mark K Louder; Krisha McKee; Robert T Bailer; Brendan W Pier; Claudia A Jette; Garnett Kelsoe; Wilton B Williams; Lynn Morris; John Kappes; Kshitij Wagh; Gift Kamanga; Myron S Cohen; Peter T Hraber; David C Montefiori; Ashley Trama; Hua-Xin Liao; Thomas B Kepler; M Anthony Moody; Feng Gao; Samuel J Danishefsky; John R Mascola; George M Shaw; Beatrice H Hahn; Stephen C Harrison; Bette T Korber; Barton F Haynes
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Review 10.  Strategies to guide the antibody affinity maturation process.

Authors:  Nicole A Doria-Rose; M Gordon Joyce
Journal:  Curr Opin Virol       Date:  2015-04-24       Impact factor: 7.090

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