Schoeberl Ursula E, Fitz Johanna, von der Linde Maximilian, Valieris Renan, Bauer Bernd, Malzl Daniel, Froussios Kimon, Costea Julia, Schmidt Franziska, Pflaum Jeremy, Bartl Bianca, Albrecht Johanna, Wiedemann Eva-Maria, Garcia Adriana Cantoran, Peycheva Mihaela, Rizzi Marta, Goloborodko Anton, Tojal da Silva Israel, Pavri Rushad
Research Institute of Molecular Pathology (IMP), Campus-Vienna-Biocenter-1, Vienna Biocenter, 1030 Vienna, Austria; Max Perutz Labs, Vienna Biocenter Campus (VBC), Dr.-Bohr-Gasse 9, 1030 Vienna, Austria; University of Vienna, Max Perutz Labs, Department of Biochemistry and Cell Biology, Dr.-Bohr-Gasse 9, 1030 Vienna, Austria.
Research Institute of Molecular Pathology (IMP), Campus-Vienna-Biocenter-1, Vienna Biocenter, 1030 Vienna, Austria.
Mol Cell. 2025 Jul 17;85(14):2701-2717.e9. doi: 10.1016/j.molcel.2025.06.003. Epub 2025 Jun 27.
The generation of protective antibodies by somatic hypermutation (SHM) is essential for antibody maturation and adaptive immunity. SHM involves co-transcriptional mutagenesis of immunoglobulin variable (V) regions regulated by enhancers located hundreds of kilobases away. How 3D chromatin topology affects SHM is poorly understood. Here, we measure higher-order interactions on single alleles of the human immunoglobulin heavy-chain locus (IGH) using Tri-C. We find that SHM is underpinned by a multiway hub wherein the V region is proximal to all enhancers. Cohesin-mediated loop extrusion is dispensable for IGH transcription and hub architecture. Transcription and mutagenesis of IGH switch regions, which are necessary for antibody class-switch recombination, create new chromatin loops that can form without cohesin. However, these additional loops do not compromise hub integrity, V region transcription, or SHM. Thus, antibody maturation occurs within a multiway hub accommodating several gene-enhancer loops in which transcription and mutagenesis of different segments occur non-competitively.
通过体细胞超突变(SHM)产生保护性抗体对于抗体成熟和适应性免疫至关重要。SHM涉及由位于数百千碱基之外的增强子调控的免疫球蛋白可变(V)区的共转录诱变。三维染色质拓扑结构如何影响SHM尚不清楚。在这里,我们使用Tri-C测量人类免疫球蛋白重链基因座(IGH)单等位基因上的高阶相互作用。我们发现SHM由一个多路枢纽支撑,其中V区靠近所有增强子。黏连蛋白介导的环挤压对于IGH转录和枢纽结构并非必需。抗体类别转换重组所必需的IGH转换区的转录和诱变会产生新的染色质环,这些环可以在没有黏连蛋白的情况下形成。然而,这些额外的环不会损害枢纽完整性、V区转录或SHM。因此,抗体成熟发生在一个容纳多个基因-增强子环的多路枢纽内,其中不同片段的转录和诱变以非竞争性方式发生。