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首页> 外文期刊>The Journal of Experomental Medicine >Identification of HLA-DR1 beta chain residues critical for binding staphylococcal enterotoxins A and E.
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Identification of HLA-DR1 beta chain residues critical for binding staphylococcal enterotoxins A and E.

机译:鉴定对结合葡萄球菌肠毒素A和E至关重要的HLA-DR1β链残基。

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Superantigens are thought to make external contacts with major histocompatibility complex (MHC) class II molecules and with the V beta portion of a T cell antigen receptor (TCR), thereby stimulating entire families of T cells. The precise mapping of superantigen binding sites on class II molecules may provide valuable information on how TCR and MHC molecules interact. Two bacterial superantigens, staphylococcal enterotoxins A and E (SEA/SEE) bind well to most HLA-DR alleles, but poorly to HLA-DRw53. The sequences responsible for this binding were localized to the putative alpha helix of the DR beta chain by measuring toxin binding to a panel of chimeric class II molecules expressed on transfected cells. Binding of SEA/SEE to the DRw14 (Dw9) molecule suggested that the conserved histidine 81 in the beta chain of most DR molecules was important, whereas the tyrosine 81 in the DRw53 beta chain was detrimental for high-affinity binding. To prove this, reciprocal point mutations were introduced in the DR1 and DRw53 beta chains. Mutation of histidine 81 in the DR1 beta chain to tyrosine reduced SEA/SEE binding, but did not prevent recognition of two DR1-restricted peptides by six of eight antigen-specific T cell lines. Conversely, introduction to histidine at position 81 in the DRw53 beta chain restored normal levels of SEA/SEE binding. These data suggest that a binding site of SEA and SEE lies on the outer face of the beta chain alpha helix, pointing away from the antigen-binding groove.
机译:人们认为超抗原与主要的组织相容性复合物(MHC)II类分子以及T细胞抗原受体(TCR)的Vβ部分发生外部接触,从而刺激了整个T细胞家族。 II类分子上超抗原结合位点的精确定位可提供有关TCR和MHC分子如何相互作用的有价值的信息。两种细菌超抗原,葡萄球菌肠毒素A和E(SEA / SEE)与大多数HLA-DR等位基因结合良好,但与HLA-DRw53结合较弱。通过测量与转染细胞上表达的一组嵌合II类分子结合的毒素,将负责这种结合的序列定位在DRβ链的推定α螺旋上。 SEA / SEE与DRw14(Dw9)分子的结合表明,大多数DR分子的β链中保守的组氨酸81很重要,而DRw53β链中的酪氨酸81对高亲和力结合不利。为了证明这一点,在DR1和DRw53 beta链中引入了对等点突变。 DR1β链中的组氨酸81突变为酪氨酸可降低SEA / SEE结合,但不能阻止八个抗原特异性T细胞系中的六个对两个DR1限制性肽的识别。相反,在DRw53β链的81位引入组氨酸可恢复正常水平的SEA / SEE结合。这些数据表明SEA和SEE的结合位点位于β链α螺旋的外表面,指向远离抗原结合槽的方向。

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