International Immunology · 2013 · 25 citations · 40 references
High-affinity memory B cells are preferentially selected during secondary responses and rapidly differentiate into antibody-producing cells. However, it remains unknown whether only high-affinity, mutated memory B cells simply expand to dominate the secondary response or if in fact memory B cells with a diverse VH repertoire, including those with no mutations, accumulate somatic mutations to create a new repertoire through the process of affinity maturation. In this report, we took a new approach to address this question by analyzing the VH gene repertoire of IgG1(+) memory B cells before and after antigen re-exposure in a host unable to generate IgG(+) B cells. We show here that both mutated and unmutated IgG1(+) memory B cells respond to secondary challenge and expand while accumulating somatic mutations in their VH genes in a stepwise manner. Both types of memory cells subsequently established a VH gene repertoire dominated by two major clonotypes, which are distinct from the original repertoire before antigen re-exposure. In addition, heavily mutated memory B cells were excluded from the secondary repertoire. Thus, both mutated and unmutated IgG1(+) memory cells equally contribute to establish a new antibody repertoire through a dynamic process of mutation and selection, becoming optimally adapted to the recall challenge.
40
Humoral Immunity Due to Long-Lived Plasma Cells
Mark K. Slifka, Rustom Antia, Jason K. Whitmire et al. · Immunity · 1998 · 1.2K citations · Full text
Intraclonal generation of antibody mutants in germinal centres
Joshy Jacob, Garnett Kelsoe, Klaus Rajewsky · Nature · 1991 · 1.1K citations
Control of Inflammation, Cytokine Expression, and Germinal Center Formation by BCL-6
Alexander L. Dent, Arthur L. Shaffer, Xin Yu et al. · Science · 1997 · 924 citations