首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Quantitative thresholds of MHC class II I-E expressed on hemopoietically derived antigen-presenting cells in transgenic NOD/Lt mice determine level of diabetes resistance and indicate mechanism of protection.
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Quantitative thresholds of MHC class II I-E expressed on hemopoietically derived antigen-presenting cells in transgenic NOD/Lt mice determine level of diabetes resistance and indicate mechanism of protection.

机译:在转基因NOD / Lt小鼠中,造血来源的抗原呈递细胞上表达的MHC II-I-E类的定量阈值决定了糖尿病的抵抗水平,并表明了其保护机制。

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摘要

Two homozygous lines of transgenic NOD/Lt mice expressing MHC class II I-E molecules at quantitatively different levels were utilized to study mechanisms of I-E-mediated diabetes prevention. In line 12, I-E expression on APC at levels comparable with that in BALB/cByJ controls conferred only partial diabetes resistance. In line 5, greater than normal I-E levels on APC correlated with nearly complete resistance. Levels of endogenously encoded I-Ag7 correlated inversely with transgene-induced I-E expression. T cell transfer experiments into NOD/severe combined immunodeficient mice demonstrated the presence of pathogenic T cells in I-E+ donors, and that continuous expression of I-E on hemopoietically derived APC was required to block their pathogenic function. T cells from transgenic and nontransgenic NOD/Lt mice primed in vivo against the beta cell autoantigen 65-kDa isoform of glutamic acid decarboxylase (GAD65) and two peptides derived from this protein proliferated when restimulated in vitro. However,reverse-transcription PCR and ELISA measurements of cytokine mRNA and protein levels showed that the GAD65-reactive T cells from both line 5 and line 12 mice produced higher levels of IL-4 and lower levels of IFN-gamma than similar T cells from standard NOD/Lt mice. Thus, the inverse relationship between I-E and I-Ag7 expression was associated with qualitative differences in T cell responses to putative beta cell autoantigens. Collectively, these data indicate quantitative increases in I-E expression on APC may block insulin-dependent diabetes mellitus by altering the balance of cytokines produced by beta cell autoreactive T cells.
机译:利用表达纯合水平不同的MHC II类I-E分子的两条纯合转基因NOD / Lt小鼠品系研究I-E介导的糖尿病预防机制。在第12行中,APC上的I-E表达水平与BALB / cByJ对照中的I-E水平相当,仅赋予部分糖尿病抵抗力。在第5行中,高于正常I-E水平的APC与几乎完全抵抗有关。内源编码的I-Ag7的水平与转基因诱导的I-E表达成反比。将T细胞转移到NOD /严重结合的免疫缺陷小鼠中的实验证明I-E +供体中存在致病性T细胞,并且需要I-E在造血来源的APC上连续表达以阻断其致病功能。来自转基因和非转基因NOD / Lt小鼠的T细胞在体内针对谷氨酸脱羧酶(GAD65)的β细胞自身抗原65 kDa亚型进行了体内启动反应,并且在体外重新刺激时,衍生自该蛋白质的两种肽得以增殖。然而,细胞因子mRNA和蛋白水平的逆转录PCR和ELISA测量结果显示,与第5行和第12行小鼠相比,GAD65反应性T细胞产生的IL-4水平更高,而IFN-γ产生的水平低于同等水平的T细胞。标准NOD / Lt小鼠。因此,I-E和I-Ag7表达之间的反向关系与T细胞对假定的β细胞自身抗原的反应的质量差异有关。总体而言,这些数据表明APC上I-E表达的定量增加可能会通过改变β细胞自身反应性T细胞产生的细胞因子平衡来阻断胰岛素依赖型糖尿病。

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