Literature DB >> 1431104

Patterns of antibody specificity during the BALB/c immune response to hen eggwhite lysozyme.

M A Newman1, C R Mainhart, C P Mallett, T B Lavoie, S J Smith-Gill.   

Abstract

We tested 49 BALB/c antilysozyme mAb from seven intervals during the immune response to lysozyme for patterns of specificity and avidity. We found that the antibody epitopes in composite covered at least 80% of the lysozyme surface, and their patterns of overlap suggest a continuum of potential antibody epitopes. Previously observed regional specificities, which emerged at different times in the immune response, were more discretely defined in late response antibodies, when the majority of mAb could be assigned to one of three functionally nonoverlapping complementation groups. The area covered by each antigenic region may be greater than an individual epitope, and may include multiple epitopes that overlap structurally and functionally to varying degrees. Connectivity between antigenic regions was seen in interactions among early and late stage antibodies, and among secondary stage mAb, but not among tertiary stage mAb from hyperimmunized mice. Patterns of overlap of early and late response antibodies suggest that the organization of antibody specificities change during the progression from primary to secondary to tertiary response. Over the same period in the response, the average relative avidity of IgG1 kappa mAb did not increase, suggesting that "affinity maturation" of serum antibodies reflects an increase in the number and diversity of antibodies, rather than an overall increase in the avidity of individual antibodies.

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Year:  1992        PMID: 1431104

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  20 in total

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2.  Kinetics of association of anti-lysozyme monoclonal antibody D44.1 and hen-egg lysozyme.

Authors:  G Altobelli; S Subramaniam
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3.  Complete analysis of the B-cell response to a protein antigen, from in vivo germinal centre formation to 3-D modelling of affinity maturation.

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4.  Structural mechanism for affinity maturation of an anti-lysozyme antibody.

Authors:  Ana Cauerhff; Fernando A Goldbaum; Bradford C Braden
Journal:  Proc Natl Acad Sci U S A       Date:  2004-02-26       Impact factor: 11.205

5.  A structurally based approach to determine HLA compatibility at the humoral immune level.

Authors:  Rene J Duquesnoy
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6.  Immunopaleontology reveals how affinity enhancement is achieved during affinity maturation of antibodies to influenza virus.

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7.  Kinetic and affinity limits on antibodies produced during immune responses.

Authors:  J Foote; H N Eisen
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8.  Light chain somatic mutations change thermodynamics of binding and water coordination in the HyHEL-10 family of antibodies.

Authors:  Mauro Acchione; Claudia A Lipschultz; Morgan E DeSantis; Aranganathan Shanmuganathan; Mi Li; Alexander Wlodawer; Sergey Tarasov; Sandra J Smith-Gill
Journal:  Mol Immunol       Date:  2009-09-24       Impact factor: 4.407

9.  Differences in electrostatic properties at antibody-antigen binding sites: implications for specificity and cross-reactivity.

Authors:  Neeti Sinha; Srinivasan Mohan; Claudia A Lipschultz; Sandra J Smith-Gill
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Review 10.  Interactions of protein antigens with antibodies.

Authors:  D R Davies; G H Cohen
Journal:  Proc Natl Acad Sci U S A       Date:  1996-01-09       Impact factor: 11.205

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