Girgis L, Davis M M, Fazekas de St Groth B
Centenary Institute of Cancer Medicine and Cell Biology, Newtown, Sydney, New South Wales 2042, Australia.
J Exp Med. 1999 Jan 18;189(2):265-78. doi: 10.1084/jem.189.2.265.
The mechanism of self-tolerance in the CD4(+) T cell compartment was examined in a double transgenic (Tg) model in which T cell receptor (TCR)-alpha/beta Tg mice with specificity for the COOH-terminal peptide of moth cytochrome c in association with I-Ek were crossed with antigen Tg mice. Partial deletion of cytochrome-reactive T cells in the thymus allowed some self-specific CD4(+) T cells to be selected into the peripheral T cell pool. Upon restimulation with peptide in vitro, these cells upregulated interleukin (IL)-2 receptor but showed substantially lower cytokine production and proliferation than cells from TCR Tg controls. Proliferation and cytokine production were restored to control levels by addition of saturating concentrations of IL-2, consistent with the original in vitro definition of T cell anergy. However, the response of double Tg cells to superantigen stimulation in the absence of exogenous IL-2 was indistinguishable from that of TCR Tg controls, indicating that these self-reactive cells were not intrinsically hyporesponsive. Measurement of surface expression of Tg-encoded TCR alpha and beta chains revealed that cells from double Tg mice expressed the same amount of TCR-beta as cells from TCR Tg controls, but only 50% of TCR-alpha, implying expression of more than one alpha chain. Naive CD4(+) T cells expressing both Tg-encoded and endogenous alpha chains also manifested an anergic phenotype upon primary stimulation with cytochrome c in vitro, suggesting that low avidity for antigen can produce an anergic phenotype in naive cells. The carboxyfluorescein diacetate succinimidyl ester cell division profiles in response to titered peptide +/- IL-2 indicated that expression of IL-2 receptor correlated with peptide concentration but not TCR level, whereas IL-2 production was profoundly affected by the twofold decrease in specific TCR expression. Addition of exogenous IL-2 recruited double Tg cells into division, resulting in a pattern of cell division indistinguishable from that of controls. Thus, in this experimental model, cells expressing more than one alpha chain escaped negative selection to a soluble self-protein in the thymus and had an anergic phenotype indistinguishable from that of low avidity naive cells. The data are consistent with the notion that avidity-mediated selection for self-reactivity in the thymus may lead to the appearance of anergy within the peripheral, self-reactive T cell repertoire, without invoking the induction of hyporesponsiveness to TCR-mediated signals.
在一个双转基因(Tg)模型中研究了CD4(+) T细胞区室中的自身耐受机制,在该模型中,对与I-Ek相关的蛾细胞色素c的COOH末端肽具有特异性的T细胞受体(TCR)-α/β Tg小鼠与抗原Tg小鼠杂交。胸腺中细胞色素反应性T细胞的部分缺失使得一些自身特异性CD4(+) T细胞被选择进入外周T细胞库。在体外经肽再次刺激后,这些细胞上调了白细胞介素(IL)-2受体,但与来自TCR Tg对照的细胞相比,细胞因子产生和增殖显著降低。通过添加饱和浓度的IL-2,增殖和细胞因子产生恢复到对照水平,这与T细胞无能的原始体外定义一致。然而,在没有外源性IL-2的情况下,双Tg细胞对超抗原刺激的反应与TCR Tg对照的反应没有区别,表示这些自身反应性细胞并非本质上反应低下。对Tg编码的TCR α和β链的表面表达进行测量发现,来自双Tg小鼠的细胞表达的TCR-β量与来自TCR Tg对照的细胞相同,但TCR-α仅为50%,这意味着表达了不止一种α链。表达Tg编码和内源性α链的初始CD4(+) T细胞在体外经细胞色素c初次刺激后也表现出无能表型,表明对抗原的低亲和力可在初始细胞中产生无能表型。响应滴定肽 +/- IL-2的羧基荧光素二乙酸琥珀酰亚胺酯细胞分裂图谱表明,IL-2受体的表达与肽浓度相关但与TCR水平无关,而IL-2的产生受到特异性TCR表达降低两倍的深刻影响。添加外源性IL-2促使双Tg细胞进入分裂,导致细胞分裂模式与对照无法区分。因此,在这个实验模型中,表达不止一种α链的细胞逃避了胸腺中对可溶性自身蛋白的阴性选择,并具有与低亲和力初始细胞无法区分的无能表型。这些数据与以下观点一致,即胸腺中由亲和力介导的对自身反应性的选择可能导致外周自身反应性T细胞库中出现无能,而无需诱导对TCR介导信号的反应低下。