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Independent Roles of Switching and Hypermutation in the Development and Persistence of B Lymphocyte Memory.


ABSTRACT: Somatic hypermutation (SHM) and class-switch recombination (CSR) increase the affinity and diversify the effector functions of antibodies during immune responses. Although SHM and CSR are fundamentally different, their independent roles in regulating B cell fate have been difficult to uncouple because a single enzyme, activation-induced cytidine deaminase (encoded by Aicda), initiates both reactions. Here, we used a combination of Aicda and antibody mutant alleles that separate the effects of CSR and SHM on polyclonal immune responses. We found that class-switching to IgG1 biased the fate choice made by B cells, favoring the plasma cell over memory cell fate without significantly affecting clonal expansion in the germinal center (GC). In contrast, SHM reduced the longevity of memory B cells by creating polyreactive specificities that were selected against over time. Our data define the independent contributions of SHM and CSR to the generation and persistence of memory in the antibody system.

SUBMITTER: Gitlin AD 

PROVIDER: S-EPMC4838502 | biostudies-literature | 2016 Apr

REPOSITORIES: biostudies-literature

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Independent Roles of Switching and Hypermutation in the Development and Persistence of B Lymphocyte Memory.

Gitlin Alexander D AD   von Boehmer Lotta L   Gazumyan Anna A   Shulman Ziv Z   Oliveira Thiago Y TY   Nussenzweig Michel C MC  

Immunity 20160302 4


Somatic hypermutation (SHM) and class-switch recombination (CSR) increase the affinity and diversify the effector functions of antibodies during immune responses. Although SHM and CSR are fundamentally different, their independent roles in regulating B cell fate have been difficult to uncouple because a single enzyme, activation-induced cytidine deaminase (encoded by Aicda), initiates both reactions. Here, we used a combination of Aicda and antibody mutant alleles that separate the effects of CS  ...[more]

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