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CD4 T Cells Selected by Antigen Under Th2 Polarizing Conditions Favor an Elongated TCRα Chain Complementarity-Determining Region 3

机译:在Th2极化条件下抗原选择的CD4 T细胞有利于延长的TCRα链互补决定区3

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The affinity of the MHC/peptide/TCR interaction is thought to be one factor determining the differentiation of CD4+ T cells into Th1 or Th2 phenotypes. To study whether CD4+ cells generated under conditions favoring Th1 or Th2 responses select structurally different TCRs, Th1 and Th2 clones and lines were generated from nonobese diabetic and nonobese diabetic H2-E transgenic mice against the peptides proteolipoprotein 56–70, glutamic acid decarboxylase65 524–543, and heat shock protein-60 peptides 168–186 and 248–264. Th1/Th2 polarization allowed the generation of clones and lines with fixed peptide specificity and class II restriction but differing in Th1/Th2 phenotype in which the impact on TCR selection and structure could be studied. The Th2 clones tended to use longer TCR complementarity-determining region (CDR)3α loops than their Th1 counterparts. This trend was confirmed by analyzing TCRα transcripts from Th1 and Th2 polarized, bulk populations. Molecular modeling of Th1- and Th2-derived TCRs demonstrated that Th2 CDR3α comprised larger side chain residues than Th1 TCRs. The elongated, bulky Th2 CDR3α loops may be accommodated at the expense of less optimal interactions between the MHC class II/peptide and other CDR loops of the TCR. We propose that CD4+ T cells selected from the available repertoire under Th2 polarizing conditions tend to have elongated TCR CDR3α loops predicted to alter TCR binding, reducing contact at other interfaces and potentially leading to impeded TCR triggering.
机译:MHC /肽/ TCR相互作用的亲和力被认为是决定CD4 + T细胞分化为Th1或Th2表型的因素之一。为了研究在有利于Th1或Th2反应的条件下产生的CD4 +细胞是否选择了结构上不同的TCR,从非肥胖和非肥胖H2-E糖尿病H2-E转基因小鼠中产生了针对肽脂蛋白56-70,谷氨酸脱羧酶65 524-的Th1和Th2克隆和品系。 543和热休克蛋白60肽168-186和248-264。 Th1 / Th2极化可产生具有固定肽段特异性和II类限制的克隆和品系,但在Th1 / Th2表型方面有所不同,在其中可以研究对TCR选择和结构的影响。 Th2克隆比其Th1对应物倾向于使用更长的TCR互补决定区(CDR)3α环。通过分析来自Th1和Th2极化的大批种群的TCRα转录物,证实了这一趋势。 Th1和Th2衍生的TCR的分子模型表明,Th2CDR3α比Th1 TCR包含更大的侧链残基。可以容纳伸长的,笨重的Th2CDR3α环,但以MHC II类/肽与TCR的其他CDR环之间的最佳相互作用较弱为代价。我们建议,在Th2极化条件下从可用库中选择的CD4 + T细胞倾向于具有延长的TCRCDR3α环,预计可改变TCR结合,减少其他界面的接触并可能导致TCR触发受阻。

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