Turner S J, Jameson S C, Carbone F R
Department of Pathology and Immunology, Monash Medical School, Prahran, Victoria, Australia.
J Immunol. 1997 Sep 1;159(5):2312-7.
T cells recognize a complex of antigenic peptide bound to the class I or class II products of the MHC. Crystallographic analysis of the interaction between MHC class I-bound peptide fragments and specific TCR have recently been described and highlight the importance of the CDR3 in determining peptide specificity. The results presented here show functional data for TCR recognition of the H2-Kb class-I restricted determinant derived from OVA (SIINFEKL) that are consistent with the TCR orientation defined by these crystal structures. In addition, we also found that the beta-chain CDR3 dominates side chain specificity for the most exposed regions within this peptide. The data also suggest that this orientation and pattern of beta-chain dominance may extend to the recognition of a second H2-Kb-restricted peptide from the herpes simplex virus type 1 glycoprotein B (SSIEFARL), which shares a common alpha-chain contact with the OVA peptide. These results are discussed in terms of a common orientation for TCR-ligand interaction and the greater potential for TCR beta-chain CDR3 diversity in determining peptide side chain specificity.
T细胞识别与MHC I类或II类产物结合的抗原肽复合物。最近已经描述了MHC I类结合肽片段与特异性TCR之间相互作用的晶体学分析,突出了CDR3在确定肽特异性方面的重要性。此处呈现的结果显示了TCR识别源自OVA(SIINFEKL)的H2-Kb I类限制性决定簇的功能数据,这些数据与由这些晶体结构定义的TCR方向一致。此外,我们还发现β链CDR3在该肽最暴露区域的侧链特异性方面占主导地位。数据还表明,这种β链主导的方向和模式可能延伸至对来自单纯疱疹病毒1型糖蛋白B(SSIEFARL)的第二种H2-Kb限制性肽的识别,该肽与OVA肽共享一个共同的α链接触位点。将根据TCR-配体相互作用的共同方向以及TCR β链CDR3在确定肽侧链特异性方面更大的多样性潜力来讨论这些结果。