Bluestone J A, Kaliyaperumal A, Jameson S, Miller S, Dick R
Ben May Institute, Department of Pathology, University of Chicago, IL 60637.
J Immunol. 1993 Oct 15;151(8):3943-53.
Class I molecules of the MHC are intimately involved in the development and function of CD8+ T cells. Small peptides, derived from endogenous proteins, bind within the Ag binding groove created by the beta-pleated sheets and alpha-helices of the alpha 1 and alpha 2 domains of the class I molecule. This peptide-MHC complex has been shown to influence allorecognition by CD8+ T cells. However, the precise role of peptide in alloantigen recognition remains unclear. We have previously shown that conformational changes induced in the class I molecules can be identified as specific alterations in serologic epitopes. These results suggested that alloreactive T cells may detect structural changes in MHC based on the nature of the peptide binding to the class I protein. Here, we have shown that, in at least some instances, alloreactivity may not depend on the recognition of a precise self-peptide but on an epitope on the class I molecule influenced by the peptide. The nature of specific peptides expressed by class I-bearing cells may, therefore, have a dramatic effect on T cell development, self-tolerance, and alloreactivity.
MHC的I类分子与CD8+ T细胞的发育和功能密切相关。源自内源性蛋白质的小肽,结合在由I类分子α1和α2结构域的β折叠片层和α螺旋形成的抗原结合槽内。已证明这种肽-MHC复合物会影响CD8+ T细胞的同种异体识别。然而,肽在同种异体抗原识别中的精确作用仍不清楚。我们之前已经表明,I类分子中诱导的构象变化可被识别为血清学表位的特异性改变。这些结果表明,同种异体反应性T细胞可能基于与I类蛋白结合的肽的性质来检测MHC中的结构变化。在此,我们已经表明,至少在某些情况下,同种异体反应性可能不依赖于对精确自身肽的识别,而是依赖于受肽影响的I类分子上的一个表位。因此,携带I类分子的细胞表达的特定肽的性质可能对T细胞发育、自身耐受性和同种异体反应性产生显著影响。