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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Accumulation of B1-like B cells in transgenic mice over-expressing catalytically inactive RAG1 in the periphery.
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Accumulation of B1-like B cells in transgenic mice over-expressing catalytically inactive RAG1 in the periphery.

机译:转基因小鼠中B1样B细胞的积累在外周过度表达催化失活的RAG1。

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摘要

During their development, B lymphocytes undergo V(D)J recombination events and selection processes that, if successfully completed, produce mature B cells expressing a non-self-reactive B-cell receptor (BCR). Primary V(D)J rearrangements yield self-reactive B cells at high frequency, triggering attempts to remove, silence, or reprogramme them through deletion, anergy induction, or secondary V(D)J recombination (receptor editing), respectively. In principle, expressing a catalytically inactive V(D)J recombinase during a developmental stage in which V(D)J rearrangement is initiated may impair this process. To test this idea, we generated transgenic mice expressing a RAG1 active site mutant (dnRAG1 mice); RAG1 transcript was elevated in splenic, but not bone marrow, B cells in dnRAG1 mice relative to wild-type mice. The dnRAG1 mice accumulate splenic B cells with a B1-like phenotype that exhibit defects in B-cell activation, and are clonally diverse, yet repertoire restricted with a bias toward Jkappa1 gene segment usage. The dnRAG1 mice show evidence of impaired B-cell development at the immature-to-mature transition, immunoglobulin deficiency, and poorer immune responses to thymus-independent antigens. Interestingly, dnRAG1 mice expressing the anti-dsDNA 3H9H56R heavy chain fail to accumulate splenic B1-like cells, yet retain peritoneal B1 cells. Instead, these mice show an expanded marginal zone compartment, but no difference is detected in the frequency of heavy chain gene replacement. Taken together, these data suggest a model in which dnRAG1 expression impairs secondary V(D)J recombination. As a result, selection and/or differentiation processes are altered in a way that promotes expansion of B1-like B cells in the spleen.
机译:在其发育过程中,B淋巴细胞经历V(D)J重组事件和选择过程,如果成功完成,则会产生表达非自我反应性B细胞受体(BCR)的成熟B细胞。初级V(D)J重排以高频率产生自我反应性B细胞,分别触发尝试通过删除,无能诱导或次级V(D)J重组(受体编辑)将其去除,沉默或重编程。原则上,在启动V(D)J重排的发育阶段表达无催化活性的V(D)J重组酶可能会损害该过程。为了验证这一想法,我们生成了表达RAG1活性位点突变体的转基因小鼠(dnRAG1小鼠)。相对于野生型小鼠,dnRAG1小鼠的脾脏B细胞(但不是骨髓B细胞)中的RAG1转录物升高。 dnRAG1小鼠积聚具有B1样表型的脾B细胞,在B细胞活化中表现出缺陷,并且克隆多样性多样,但所有组成部分均受Jkappa1基因片段使用偏见的限制。 dnRAG1小鼠显示出从幼稚到成熟过渡的B细胞发育受损,免疫球蛋白缺乏以及对胸腺非依赖性抗原的较弱免疫反应的证据。有趣的是,表达抗dsDNA 3H9H56R重链的dnRAG1小鼠无法积聚脾脏的B1样细胞,但保留了腹膜B1细胞。相反,这些小鼠显示出扩大的边缘区区室,但在重链基因替换的频率上未检测到差异。综上所述,这些数据表明了其中dnRAG1表达削弱次级V(D)J重组的模型。结果,选择和/或分化过程以促进脾中B1样B细胞扩增的方式改变。

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