免疫系统
生殖系
内源性逆转录病毒
细胞生物学
自身免疫
生发中心
生物
获得性免疫系统
表观遗传学
免疫学
B细胞
病毒学
遗传学
抗体
基因
基因组
作者
Eileen Rauch,Timm Amendt,Aleksandra Lopez Krol,Fabian Lang,Vincent Linse,Michelle Hohmann,Ann-Christin Keim,Susanne Kreutzer,Kevin Kawengian,Malte Buchholz,Philipp Duschner,Saskia Grauer,Barbara S. Schnierle,Andreas Ruhl,Ingo Burtscher,Sonja Dehnert,Timothy Chege Kuria,Alexandra Kupke,Stephanie Paul,Thomas Liehr
标识
DOI:10.1038/s41467-024-45201-6
摘要
Abstract Endogenous retroviruses (ERVs) are an integral part of the mammalian genome. The role of immune control of ERVs in general is poorly defined as is their function as anti-cancer immune targets or drivers of autoimmune disease. Here, we generate mouse-strains where Moloney-Murine Leukemia Virus tagged with GFP (ERV-GFP) infected the mouse germline. This enables us to analyze the role of genetic, epigenetic and cell intrinsic restriction factors in ERV activation and control. We identify an autoreactive B cell response against the neo-self/ERV antigen GFP as a key mechanism of ERV control. Hallmarks of this response are spontaneous ERV-GFP + germinal center formation, elevated serum IFN-γ levels and a dependency on Age-associated B cells (ABCs) a subclass of T-bet + memory B cells. Impairment of IgM B cell receptor-signal in nucleic-acid sensing TLR-deficient mice contributes to defective ERV control. Although ERVs are a part of the genome they break immune tolerance, induce immune surveillance against ERV-derived self-antigens and shape the host immune response.
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