免疫系统
生物
多克隆抗体
克隆缺失
转基因
免疫耐受
抗体
免疫学
细胞生物学
免疫受体
抗原
受体
中心公差
T细胞
T细胞受体
基因
遗传学
作者
Djemel Aït‐Azzouzene,Laurent Verkoczy,Jorieke H. Peters,Amanda L. Gavin,Patrick Skog,José Luis Vela,David Nemazee
摘要
Understanding immune tolerance mechanisms is a major goal of immunology research, but mechanistic studies have generally required the use of mouse models carrying untargeted or targeted antigen receptor transgenes, which distort lymphocyte development and therefore preclude analysis of a truly normal immune system. Here we demonstrate an advance in in vivo analysis of immune tolerance that overcomes these shortcomings. We show that custom superantigens generated by single chain antibody technology permit the study of tolerance in a normal, polyclonal immune system. In the present study we generated a membrane-tethered anti-Igkappa-reactive single chain antibody chimeric gene and expressed it as a transgene in mice. B cell tolerance was directly characterized in the transgenic mice and in radiation bone marrow chimeras in which ligand-bearing mice served as recipients of nontransgenic cells. We find that the ubiquitously expressed, Igkappa-reactive ligand induces efficient B cell tolerance primarily or exclusively by receptor editing. We also demonstrate the unique advantages of our model in the genetic and cellular analysis of immune tolerance.
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