Literature DB >> 17546032

Allelic 'choice' governs somatic hypermutation in vivo at the immunoglobulin kappa-chain locus.

Shira Fraenkel1, Raul Mostoslavsky, Tatiana I Novobrantseva, Roberta Pelanda, Jayanta Chaudhuri, Gloria Esposito, Steffen Jung, Frederick W Alt, Klaus Rajewsky, Howard Cedar, Yehudit Bergman.   

Abstract

Monoallelic demethylation and rearrangement control allelic exclusion of the immunoglobulin kappa-chain locus (Igk locus) in B cells. Here, through the introduction of pre-rearranged Igk genes into their physiological position, the critical rearrangement step was bypassed, thereby generating mice producing B cells simultaneously expressing two different immunoglobulin-kappa light chains. Such 'double-expressing' B cells still underwent monoallelic demethylation at the Igk locus, and the demethylated allele was the 'preferred' substrate for somatic hypermutation in each cell. However, methylation itself did not directly inhibit the activation-induced cytidine-deaminase reaction in vitro. Thus, it seems that the epigenetic mechanisms that initially bring about monoallelic variable-(diversity)-joining rearrangement continue to be involved in the control of antibody diversity at later stages of B cell development.

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Year:  2007        PMID: 17546032     DOI: 10.1038/ni1476

Source DB:  PubMed          Journal:  Nat Immunol        ISSN: 1529-2908            Impact factor:   25.606


  24 in total

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