Regulated somatic hypermutation enhances antibody affinity maturation

IF 48.5 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Nature Pub Date : 2025-03-19 DOI:10.1038/s41586-025-08728-2
Julia Merkenschlager, Andrew G. T. Pyo, Gabriela S. Silva Santos, Dennis Schaefer-Babajew, Melissa Cipolla, Harald Hartweger, Alexander D. Gitlin, Ned S. Wingreen, Michel C. Nussenzweig
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Abstract

Germinal centres are specialized microenvironments where B cells undergo affinity maturation. B cells expressing antibodies whose affinity is improved by somatic hypermutation are selected for expansion by limiting numbers of T follicular helper cells. Cell division is accompanied by mutation of the immunoglobulin genes, at what is believed to be a fixed rate of around 1 × 10−3 per base pair per cell division1. As mutagenesis is random, the probability of acquiring deleterious mutations outweighs the probability of acquiring affinity-enhancing mutations. This effect might be heightened, and even become counterproductive, in B cells that express high-affinity antibodies and undergo the greatest number of cell divisions2. Here we experimentally examine a theoretical model that explains how affinity maturation could be optimized by varying the rate of somatic hypermutation such that cells that express higher-affinity antibodies divide more but mutate less per division. Data obtained from mice immunized with SARS-CoV-2 vaccines or a model antigen align with the theoretical model and show that cells producing high-affinity antibodies shorten the G0/G1 phases of the cell cycle and reduce their mutation rates. We propose that these mechanisms safeguard high-affinity B cell lineages and enhance the outcomes of antibody affinity maturation. Germinal centre B cells modify their mutation rate to preserve high-affinity receptors, thereby safeguarding high-affinity B cell lineages and enhancing the outcomes of antibody affinity maturation.

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调节体细胞超突变促进抗体亲和成熟
生发中心是B细胞进行亲和成熟的特殊微环境。通过限制T滤泡辅助细胞的数量,选择表达抗体的B细胞进行扩增,其亲和力通过体细胞超突变得到改善。细胞分裂伴随着免疫球蛋白基因的突变,被认为是每次细胞分裂每个碱基对约1 × 10−3的固定速率1。由于突变是随机的,获得有害突变的概率大于获得亲和性增强突变的概率。在表达高亲和力抗体和细胞分裂次数最多的B细胞中,这种作用可能会增强,甚至会适得其反。在这里,我们通过实验检验了一个理论模型,该模型解释了如何通过改变体细胞超突变率来优化亲和成熟,从而使表达高亲和抗体的细胞分裂更多,但每次分裂时突变更少。从接种SARS-CoV-2疫苗或模型抗原的小鼠中获得的数据与理论模型一致,表明产生高亲和力抗体的细胞缩短了细胞周期的G0/G1期并降低了其突变率。我们认为这些机制保护了高亲和力B细胞系,并增强了抗体亲和力成熟的结果。
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来源期刊
Nature
Nature 综合性期刊-综合性期刊
CiteScore
90.00
自引率
1.20%
发文量
3652
审稿时长
3 months
期刊介绍: Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.
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