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A Novel TCR Transgenic Model Reveals That Negative Selection Involves an Immediate Bim-Dependent Pathway and a Delayed Bim-Independent Pathway

机译:一种新颖的TCR转基因模型揭示了阴性选择涉及直接的Bim依赖性途径和延迟的Bim依赖性途径

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摘要

A complete understanding of negative selection has been elusive due to the rapid apoptosis and clearance of thymocytes in vivo. We report a TCR transgenic model in which expression of the TCR during differentiation occurs only after V(D)J-like recombination. TCR expression from this transgene closely mimics expression of the endogenous TCRα locus allowing for development that is similar to wild type thymocytes. This model allowed us to characterize the phenotypic changes that occurred after TCR-mediated signaling in self-reactive thymocytes prior to their deletion in a highly physiological setting. Self-reactive thymocytes were identified as being immature, activated and CD4loCD8lo. These cells had upregulated markers of negative selection and were apoptotic. Elimination of Bim reduced the apoptosis of self-reactive thymocytes, but it did not rescue their differentiation and the cells remained at the immature CD4loCD8lo stage of development. These cells upregulate Nur77 and do not contribute to the peripheral T cell repertoire in vivo. Remarkably, development past the CD4loCD8lo stage was possible once the cells were removed from the negatively selecting thymic environment. In vitro development of these cells occurred despite their maintenance of high intracellular levels of Nur77. Therefore, in vivo, negatively selected Bim-deficient thymocytes are eliminated after prolonged developmental arrest via a Bim-independent pathway that is dependent on the thymic microenvironment. These data newly reveal a layering of immediate, Bim-dependent, and delayed Bim-independent pathways that both contribute to elimination of self-reactive thymocytes in vivo.
机译:由于体内胸腺细胞的快速凋亡和清除作用,对阴性选择的全面了解已难以捉摸。我们报告了一种TCR转基因模型,其中分化期间TCR的表达仅在V(D)J样重组后发生。来自该转基因的TCR表达紧密模拟内源TCRα基因座的表达,从而使其发育类似于野生型胸腺细胞。该模型使我们能够表征在高度生理环境中自反应性胸腺细胞中TCR介导的信号传导缺失后发生的表型变化。自我反应的胸腺细胞被鉴定为未成熟,被激活且CD4 lo CD8 lo 。这些细胞具有负选择的上调标志物并且是凋亡的。消除Bim可以减少自反应性胸腺细胞的凋亡,但不能挽救它们的分化,并且细胞仍处于未成熟的CD4 lo CD8 lo 发育阶段。这些细胞上调Nur77,并且在体内不参与外周T细胞库。值得注意的是,一旦细胞从阴性选择的胸腺环境中移出,就有可能超过CD4 lo CD8 lo 阶段。尽管它们维持了高的细胞内Nur77水平,但这些细胞仍在体外发育。因此,在体内,通过依赖胸腺微环境的依赖于Bim的途径延长了发育停滞,消除了阴性选择的缺乏Bim的胸腺细胞。这些数据新揭示了直接,Bim依赖和延迟的Bim独立途径的分层,两者均有助于体内体内自反应性胸腺细胞的消除。

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