Plasma cells and their secreted antibodies play a central role in the long-term protection against chronic viral infection. However, due to experimental limitations, a comprehensive description of linked genotypic, phenotypic, and antibody repertoire features of plasma cells (gene expression, clonal frequency, virus specificity, and affinity) has been challenging to obtain. To address this, we performed single-cell transcriptome and antibody repertoire sequencing of the murine BM plasma cell population following chronic lymphocytic choriomeningitis virus infection. Our single-cell sequencing approach recovered full-length and paired heavy- and light-chain sequence information for thousands of plasma cells and enabled us to perform recombinant antibody expression and specificity screening. Antibody repertoire analysis revealed that, relative to protein immunization, chronic infection led to increased levels of clonal expansion, class-switching, and somatic variants. Furthermore, antibodies from the highly expanded and class-switched (IgG) plasma cells were found to be specific for multiple viral antigens and a subset of clones exhibited cross-reactivity to nonviral and autoantigens. Integrating single-cell transcriptome data with antibody specificity suggested that plasma cell transcriptional phenotype was correlated to viral antigen specificity. Our findings demonstrate that chronic viral infection can induce and sustain plasma cell clonal expansion, combined with significant somatic hypermutation, and can generate cross-reactive antibodies.
Profiling the specificity of clonally expanded plasma cells during chronic viral infection by single-cell analysis.
通过单细胞分析研究慢性病毒感染期间克隆扩增浆细胞的特异性
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作者:Neumeier Daniel, Pedrioli Alessandro, Genovese Alessandro, Sandu Ioana, Ehling Roy, Hong Kai-Lin, Papadopoulou Chrysa, Agrafiotis Andreas, Kuhn Raphael, Shlesinger Danielle, Robbiani Damiano, Han Jiami, Hauri Laura, Csepregi Lucia, Greiff Victor, Merkler Doron, Reddy Sai T, Oxenius Annette, Yermanos Alexander
| 期刊: | European Journal of Immunology | 影响因子: | 3.700 |
| 时间: | 2022 | 起止号: | 2022 Feb;52(2):297-311 |
| doi: | 10.1002/eji.202149331 | 种属: | Viral |
| 研究方向: | 细胞生物学 | ||
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