Schlueter C J, Manning T C, Schodin B A, Kranz D M
Department of Biochemistry, University of Illinois, Urbana 61801, USA.
J Immunol. 1996 Nov 15;157(10):4478-85.
The TCR from the alloreactive clone 2C recognizes p2C (LSPFPFDL)/Ld and QL9 (QLSPFPFDL)/Ld complexes with affinities of 2 x 10(6) and 10(7) M(-1). Recently, it was proposed that the Phe at position 4 of p2C is critical for recognition by the 2C TCR. To further characterize the role of this peptide position in binding to Ld and in recognition by the 2C TCR, we changed the corresponding peptide position in QL9 (position 5) to other amino acids. Binding affinities of these peptides for Ld and of the peptide/Ld complexes for a soluble single chain TCR were determined. Unexpectedly, it was shown that this peptide position has a significant effect on Ld binding (100-fold), with positively charged and hydrophobic residues having a beneficial effect and negatively charged residues having a detrimental effect. Measurements of the binding affinities of these peptide/Ld complexes for the 2C TCR showed that at 4 degrees C only a Tyr substitution at this position retained high affinity for the TCR. However, significant differences in TCR binding were observed among QL9 peptide variants at 4 degrees C compared with that at 37 degrees C. The influence of this peptide position on both Ld binding and TCR binding may suggest that the 2C TCR recognizes an Ld conformational determinant that is altered by interactions with the residue at position 5 of QL9. A strong correlation was also observed between peptide-Ld affinity and the ability of peptides to sensitize Ld target cells for lysis by CTL 2C. The results are considered in view of recent models on the relationship between T cell activity and TCR-peptide-MHC binding properties.
来自同种异体反应性克隆2C的TCR以2×10⁶和10⁷M⁻¹的亲和力识别p2C(LSPFPFDL)/Ld和QL9(QLSPFPFDL)/Ld复合物。最近,有人提出p2C第4位的苯丙氨酸对于2C TCR的识别至关重要。为了进一步阐明该肽段位置在与Ld结合及被2C TCR识别中的作用,我们将QL9中的相应肽段位置(第5位)替换为其他氨基酸。测定了这些肽与Ld的结合亲和力以及肽/Ld复合物与可溶性单链TCR的结合亲和力。出乎意料的是,结果表明该肽段位置对Ld结合有显著影响(100倍),带正电荷和疏水的残基具有有益作用,而带负电荷的残基具有有害作用。对这些肽/Ld复合物与2C TCR结合亲和力的测量表明,在4℃时只有该位置的酪氨酸替代物对TCR保持高亲和力。然而,与37℃相比,在4℃时QL9肽变体之间观察到TCR结合存在显著差异。该肽段位置对Ld结合和TCR结合的影响可能表明,2C TCR识别的是一种Ld构象决定簇,它会因与QL9第5位残基的相互作用而改变。在肽-Ld亲和力与肽使Ld靶细胞对CTL 2C介导的裂解敏感的能力之间也观察到了很强的相关性。我们根据最近关于T细胞活性与TCR-肽-MHC结合特性之间关系的模型来考虑这些结果。