Fundamental roles of chromatin loop extrusion in antibody class switching.

Zhang, Xuefei; Zhang, Yu; Ba, Zhaoqing; Kyritsis, Nia; Casellas, Rafael; Alt, Frederick W · Nature · 2019

basic_science · Level V

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Abstract

Antibody class switch recombination (CSR) in B lymphocytes replaces immunoglobulin heavy chain locus (Igh) Cμ constant region exons (C<sub>H</sub>s) with one of six C<sub>H</sub>s lying 100-200 kb downstream<sup>1</sup>. Each C<sub>H</sub> is flanked upstream by an I promoter and long repetitive switch (S) region<sup>1</sup>. Cytokines and activators induce activation-induced cytidine deaminase (AID)<sup>2</sup> and I-promoter transcription, with 3' IgH regulatory region (3' IgHRR) enhancers controlling the latter via I-promoter competition for long-range 3' IgHRR interactions<sup>3-8</sup>. Transcription through donor Sμ and an activated downstream acceptor S-region targets AID-generated deamination lesions at, potentially, any of hundreds of individual S-region deamination motifs<sup>9-11</sup>. General DNA repair pathways convert these lesions to double-stranded breaks (DSBs) and join an Sμ-upstream DSB-end to an acceptor S-region-downstream DSB-end for deletional CSR<sup>12</sup>. AID-initiated DSBs at targets spread across activated S regions routinely participate in such deletional CSR joining<sup>11</sup>. Here we report that chromatin loop extrusion underlies the mechanism<sup>11</sup> by which IgH organization in cis promotes deletional CSR. In naive B cells, loop extrusion dynamically juxtaposes 3' IgHRR enhancers with the 200-kb upstream Sμ to generate a CSR centre (CSRC). In CSR-activated primary B cells, I-promoter transcription activates cohesin loading, leading to generation of dynamic subdomains that directionally align a downstream S region with Sμ for deletional CSR. During constitutive Sα CSR in CH12F3 B lymphoma cells, inversional CSR can be activated by insertion of a CTCF-binding element (CBE)-based impediment in the extrusion path. CBE insertion also inactivates upstream S-region CSR and converts adjacent downstream sequences into an ectopic S region by inhibiting and promoting their dynamic alignment with Sμ in the CSRC, respectively. Our findings suggest that, in a CSRC, dynamically impeded cohesin-mediated loop extrusion juxtaposes proper ends of AID-initiated donor and acceptor S-region DSBs for deletional CSR. Such a mechanism might also contribute to pathogenic DSB joining genome-wide.

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