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Thymocyte resistance to glucocorticoids leads to antigen-specific unresponsiveness due to 'holes' in the T cell repertoire.

机译:胸腺细胞对糖皮质激素的抗性由于T细胞库中的“孔”而导致抗原特异性无反应性。

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We have proposed that glucocorticoids antagonize TCR-mediated activation and influence which TCR avidities result in positive or negative selection. We now analyze the immune response of mice whose thymocytes express antisense transcripts to the glucocorticoid receptor (TKO mice). TKO mice responded normally to the complex antigen PPD but were proliferative nonresponders to pigeon cytochrome c 81-104 (PCC), having a large decrease in the frequency of PCC-responsive CD4+ T cells. Unlike wild-type T cells, few TKO T cells in PCC-specific cell lines expressed V alpha11+Vbeta3+. Furthermore, for naive CD4+ T cells from unimmunized TKO mice, the frequencies of many of the molecular features common to the CDR3 regions of PCC-responsive V alpha11+Vbeta3+ cells were substantially decreased. Thus, thymocyte glucocorticoid hyporesponsiveness resulted in loss of cells capable of responding to PCC, corresponding to an antigen-specific "hole" in the T cell repertoire.
机译:我们已经提出,糖皮质激素拮抗TCR介导的激活并影响TCR亲和力导致阳性或阴性选择。现在,我们分析了胸腺细胞对糖皮质激素受体表达反义转录的小鼠的免疫应答(TKO小鼠)。 TKO小鼠对复合抗原PPD正常反应,但对鸽子细胞色素c 81-104(PCC)无增殖反应,在PCC响应CD4 + T细胞的频率上有较大的降低。与野生型T细胞不同,PCC特异性细胞系中很少有TKO T细胞表达V alpha11 + Vbeta3 +。此外,对于来自未免疫的TKO小鼠的幼稚CD4 + T细胞,PCC反应性V alpha11 + Vbeta3 +细胞的CDR3区域共有的许多分子特征的频率大大降低。因此,胸腺细胞糖皮质激素的低反应性导致丧失能够响应PCC的细胞,这对应于T细胞库中的抗原特异性“孔”。

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