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Reconstructing a B-Cell Clonal Lineage. II. Mutation, Selection, and Affinity Maturation

tetano

Editor, Senior Moderator
Front Immunol. 2014 Apr 22;5:170. doi: 10.3389/fimmu.2014.00170. eCollection 2014.
Reconstructing a B-Cell Clonal Lineage. II. Mutation, Selection, and Affinity Maturation.
Kepler TB1, Munshaw S2, Wiehe K3, Zhang R3, Yu JS4, Woods CW5, Denny TN4, Tomaras GD6, Alam SM4, Moody MA7, Kelsoe G8, Liao HX4, Haynes BF4.
Author information
Abstract

Affinity maturation of the antibody response is a fundamental process in adaptive immunity during which B-cells activated by infection or vaccination undergo rapid proliferation accompanied by the acquisition of point mutations in their rearranged immunoglobulin (Ig) genes and selection for increased affinity for the eliciting antigen. The rate of somatic hypermutation at any position within an Ig gene is known to depend strongly on the local DNA sequence, and Ig genes have region-specific codon biases that influence the local mutation rate within the gene resulting in increased differential mutability in the regions that encode the antigen-binding domains. We have isolated a set of clonally related natural Ig heavy chain-light chain pairs from an experimentally infected influenza patient, inferred the unmutated ancestral rearrangements and the maturation intermediates, and synthesized all the antibodies using recombinant methods. The lineage exhibits a remarkably uniform rate of improvement of the effective affinity to influenza hemagglutinin (HA) over evolutionary time, increasing 1000-fold overall from the unmutated ancestor to the best of the observed antibodies. Furthermore, analysis of selection reveals that selection and mutation bias were concordant even at the level of maturation to a single antigen. Substantial improvement in affinity to HA occurred along mutationally preferred paths in sequence space and was thus strongly facilitated by the underlying local codon biases.
KEYWORDS:

antibody affinity maturation, antibody selection, experimental influenza infection, phylogenetics, somatic hypermutation

PMID:
24795717
[PubMed]

http://www.ncbi.nlm.nih.gov/pubmed/24795717
 
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