Andreas Agrafiotis, Raphael Dizerens, Ilena Vincenti, Ingrid Wagner, Raphael Kuhn, Danielle Shlesinger, Marcos Manero-Carranza, Tudor-Stefan Cotet, Kai-Lin Hong, Nicolas Page, Nicolas Fonta, Ghazal Shammas, Alexandre Mariotte, Margot Piccinno, Mario Kreutzfeldt, Benedikt Gruntz, Roy Ehling, Alessandro Genovese, Alessandro Pedrioli, Andreas Dounas, Sören Franzenburg, Hayrettin Tumani, Tania Kümpfel, Vladyslav Kavaka, Lisa Ann Gerdes, Klaus Dornmair, Eduardo Beltrán, Annette Oxenius, Sai T. Reddy, Doron Merkler, Alexander Yermanos
{"title":"中枢神经系统中持续的病毒特异性和克隆扩增的抗体分泌细胞对诱导的自身抗原作出反应","authors":"Andreas Agrafiotis, Raphael Dizerens, Ilena Vincenti, Ingrid Wagner, Raphael Kuhn, Danielle Shlesinger, Marcos Manero-Carranza, Tudor-Stefan Cotet, Kai-Lin Hong, Nicolas Page, Nicolas Fonta, Ghazal Shammas, Alexandre Mariotte, Margot Piccinno, Mario Kreutzfeldt, Benedikt Gruntz, Roy Ehling, Alessandro Genovese, Alessandro Pedrioli, Andreas Dounas, Sören Franzenburg, Hayrettin Tumani, Tania Kümpfel, Vladyslav Kavaka, Lisa Ann Gerdes, Klaus Dornmair, Eduardo Beltrán, Annette Oxenius, Sai T. Reddy, Doron Merkler, Alexander Yermanos","doi":"10.1007/s00401-023-02537-5","DOIUrl":null,"url":null,"abstract":"<div><p>B cells contribute to the pathogenesis of both cellular- and humoral-mediated central nervous system (CNS) inflammatory diseases through a variety of mechanisms. In such conditions, B cells may enter the CNS parenchyma and contribute to local tissue destruction. It remains unexplored, however, how infection and autoimmunity drive transcriptional phenotypes, repertoire features, and antibody functionality. Here, we profiled B cells from the CNS of murine models of intracranial (i.c.) viral infections and autoimmunity. We identified a population of clonally expanded, antibody-secreting cells (ASCs) that had undergone class-switch recombination and extensive somatic hypermutation following i.c. infection with attenuated lymphocytic choriomeningitis virus (rLCMV). Recombinant expression and characterisation of these antibodies revealed specificity to viral antigens (LCMV glycoprotein GP), correlating with ASC persistence in the brain weeks after resolved infection. Furthermore, these virus-specific ASCs upregulated proliferation and expansion programs in response to the conditional and transient induction of the LCMV GP as a neo-self antigen by astrocytes. This class-switched, clonally expanded, and mutated population persisted and was even more pronounced when peripheral B cells were depleted prior to autoantigen induction in the CNS. In contrast, the most expanded B cell clones in mice with persistent expression of LCMV GP in the CNS did not exhibit neo-self antigen specificity, potentially a consequence of local tolerance induction. Finally, a comparable population of clonally expanded, class-switched, and proliferating ASCs was detected in the cerebrospinal fluid of relapsing multiple sclerosis (RMS) patients. Taken together, our findings support the existence of B cells that populate the CNS and are capable of responding to locally encountered autoantigens.</p></div>","PeriodicalId":7012,"journal":{"name":"Acta Neuropathologica","volume":"145 3","pages":"335 - 355"},"PeriodicalIF":9.3000,"publicationDate":"2023-01-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://link.springer.com/content/pdf/10.1007/s00401-023-02537-5.pdf","citationCount":"0","resultStr":"{\"title\":\"Persistent virus-specific and clonally expanded antibody-secreting cells respond to induced self-antigen in the CNS\",\"authors\":\"Andreas Agrafiotis, Raphael Dizerens, Ilena Vincenti, Ingrid Wagner, Raphael Kuhn, Danielle Shlesinger, Marcos Manero-Carranza, Tudor-Stefan Cotet, Kai-Lin Hong, Nicolas Page, Nicolas Fonta, Ghazal Shammas, Alexandre Mariotte, Margot Piccinno, Mario Kreutzfeldt, Benedikt Gruntz, Roy Ehling, Alessandro Genovese, Alessandro Pedrioli, Andreas Dounas, Sören Franzenburg, Hayrettin Tumani, Tania Kümpfel, Vladyslav Kavaka, Lisa Ann Gerdes, Klaus Dornmair, Eduardo Beltrán, Annette Oxenius, Sai T. Reddy, Doron Merkler, Alexander Yermanos\",\"doi\":\"10.1007/s00401-023-02537-5\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>B cells contribute to the pathogenesis of both cellular- and humoral-mediated central nervous system (CNS) inflammatory diseases through a variety of mechanisms. In such conditions, B cells may enter the CNS parenchyma and contribute to local tissue destruction. It remains unexplored, however, how infection and autoimmunity drive transcriptional phenotypes, repertoire features, and antibody functionality. Here, we profiled B cells from the CNS of murine models of intracranial (i.c.) viral infections and autoimmunity. We identified a population of clonally expanded, antibody-secreting cells (ASCs) that had undergone class-switch recombination and extensive somatic hypermutation following i.c. infection with attenuated lymphocytic choriomeningitis virus (rLCMV). Recombinant expression and characterisation of these antibodies revealed specificity to viral antigens (LCMV glycoprotein GP), correlating with ASC persistence in the brain weeks after resolved infection. Furthermore, these virus-specific ASCs upregulated proliferation and expansion programs in response to the conditional and transient induction of the LCMV GP as a neo-self antigen by astrocytes. This class-switched, clonally expanded, and mutated population persisted and was even more pronounced when peripheral B cells were depleted prior to autoantigen induction in the CNS. In contrast, the most expanded B cell clones in mice with persistent expression of LCMV GP in the CNS did not exhibit neo-self antigen specificity, potentially a consequence of local tolerance induction. Finally, a comparable population of clonally expanded, class-switched, and proliferating ASCs was detected in the cerebrospinal fluid of relapsing multiple sclerosis (RMS) patients. 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Persistent virus-specific and clonally expanded antibody-secreting cells respond to induced self-antigen in the CNS
B cells contribute to the pathogenesis of both cellular- and humoral-mediated central nervous system (CNS) inflammatory diseases through a variety of mechanisms. In such conditions, B cells may enter the CNS parenchyma and contribute to local tissue destruction. It remains unexplored, however, how infection and autoimmunity drive transcriptional phenotypes, repertoire features, and antibody functionality. Here, we profiled B cells from the CNS of murine models of intracranial (i.c.) viral infections and autoimmunity. We identified a population of clonally expanded, antibody-secreting cells (ASCs) that had undergone class-switch recombination and extensive somatic hypermutation following i.c. infection with attenuated lymphocytic choriomeningitis virus (rLCMV). Recombinant expression and characterisation of these antibodies revealed specificity to viral antigens (LCMV glycoprotein GP), correlating with ASC persistence in the brain weeks after resolved infection. Furthermore, these virus-specific ASCs upregulated proliferation and expansion programs in response to the conditional and transient induction of the LCMV GP as a neo-self antigen by astrocytes. This class-switched, clonally expanded, and mutated population persisted and was even more pronounced when peripheral B cells were depleted prior to autoantigen induction in the CNS. In contrast, the most expanded B cell clones in mice with persistent expression of LCMV GP in the CNS did not exhibit neo-self antigen specificity, potentially a consequence of local tolerance induction. Finally, a comparable population of clonally expanded, class-switched, and proliferating ASCs was detected in the cerebrospinal fluid of relapsing multiple sclerosis (RMS) patients. Taken together, our findings support the existence of B cells that populate the CNS and are capable of responding to locally encountered autoantigens.
期刊介绍:
Acta Neuropathologica publishes top-quality papers on the pathology of neurological diseases and experimental studies on molecular and cellular mechanisms using in vitro and in vivo models, ideally validated by analysis of human tissues. The journal accepts Original Papers, Review Articles, Case Reports, and Scientific Correspondence (Letters). Manuscripts must adhere to ethical standards, including review by appropriate ethics committees for human studies and compliance with principles of laboratory animal care for animal experiments. Failure to comply may result in rejection of the manuscript, and authors are responsible for ensuring accuracy and adherence to these requirements.