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Transcription factor binding at Ig enhancers is linked to somatic hypermutation targeting.


ABSTRACT: Secondary diversification of the Ig repertoire occurs through somatic hypermutation (SHM), gene conversion (GCV), and class switch recombination (CSR)-three processes that are initiated by activation-induced cytidine deaminase (AID). AID targets Ig genes at orders of magnitude higher than the rest of the genome, but the basis for this specificity is poorly understood. We have previously demonstrated that enhancers and enhancer-like sequences from Ig genes are capable of stimulating SHM of neighboring genes in a capacity distinct from their roles in increasing transcription. Here, we use an in vitro proteomics approach to identify E-box, MEF2, Ets, and Ikaros transcription factor family members as potential binders of these enhancers. ChIP assays in the hypermutating Ramos B cell line confirmed that many of these factors bound the endogenous Ig? enhancer and/or the IgH intronic enhancer (E?) in vivo. Further investigation using SHM reporter assays identified binding sites for E2A and MEF2B in E? and demonstrated an association between loss of factor binding and decreases in the SHM stimulating activity of E? mutants. Our results provide novel insights into trans-acting factors that dictate SHM targeting and link their activity to specific DNA binding sites within Ig enhancers.

SUBMITTER: Dinesh RK 

PROVIDER: S-EPMC7202714 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Transcription factor binding at Ig enhancers is linked to somatic hypermutation targeting.

Dinesh Ravi K RK   Barnhill Benjamin B   Ilanges Anoj A   Wu Lizhen L   Michelson Daniel A DA   Senigl Filip F   Alinikula Jukka J   Shabanowitz Jeffrey J   Hunt Donald F DF   Schatz David G DG  

European journal of immunology 20191219 3


Secondary diversification of the Ig repertoire occurs through somatic hypermutation (SHM), gene conversion (GCV), and class switch recombination (CSR)-three processes that are initiated by activation-induced cytidine deaminase (AID). AID targets Ig genes at orders of magnitude higher than the rest of the genome, but the basis for this specificity is poorly understood. We have previously demonstrated that enhancers and enhancer-like sequences from Ig genes are capable of stimulating SHM of neighb  ...[more]

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