Manning T C, Parke E A, Teyton L, Kranz D M
Department of Biochemistry, University of Illinois, Urbana, Illinois 61801, USA.
J Exp Med. 1999 Feb 1;189(3):461-70. doi: 10.1084/jem.189.3.461.
It has been proposed that the generally low affinities of T cell receptors (TCRs) for their peptide-major histocompatibility complex (pMHC) ligands (Kd approximately 10(-4) to 10(-7) M) are the result of biological selection rather than an intrinsic affinity limitation imposed by the TCR framework. Using a soluble version of the 2C TCR, we have used complementarity determining region (CDR)-directed mutagenesis to investigate whether the affinity of this receptor for its allogeneic pMHC ligand can be improved upon. We report that several mutants at positions lying within CDR3alpha and CDR2beta showed increased affinities for pMHC compared with the wild-type receptor. Additionally, we have investigated whether Valpha mutations that have been implicated in the phenomenon of CD8(+) repertoire skewing achieve this skewing by means of generalized increases in affinity for MHC-I molecules. Two mutants (S27F and S51P), which each promote skewing toward a CD8(+) phenotype, exhibited significantly reduced affinity for pMHC-I, consistent with a quantitative-instructional model of CD4/CD8 lineage commitment. This model predicts that CD8 is downregulated on thymocytes that have TCR-ligand interactions above a minimal energy threshold. Together, the results (a) demonstrate that engineering higher affinity TCRs is feasible, and (b) provide TCR-pMHC energy values associated with CD4/CD8 repertoire skewing.
有人提出,T细胞受体(TCRs)对其肽-主要组织相容性复合体(pMHC)配体的亲和力普遍较低(解离常数Kd约为10^(-4)至10^(-7) M)是生物选择的结果,而非TCR框架所施加的内在亲和力限制。我们使用2C TCR的可溶性版本,通过互补决定区(CDR)定向诱变来研究该受体对其同种异体pMHC配体的亲和力是否能够提高。我们报道,CDR3α和CDR2β内若干位点的突变体与野生型受体相比,对pMHC的亲和力有所增加。此外,我们还研究了与CD8(+)库偏斜现象相关的Vα突变是否通过对MHC-I分子亲和力的普遍增加来实现这种偏斜。两个各自促进向CD8(+)表型偏斜的突变体(S27F和S51P)对pMHC-I的亲和力显著降低,这与CD4/CD8谱系定向的定量指导模型一致。该模型预测,在具有高于最小能量阈值的TCR-配体相互作用的胸腺细胞上,CD8会下调。总之,这些结果(a)证明构建更高亲和力的TCRs是可行的,并且(b)提供了与CD4/CD8库偏斜相关的TCR-pMHC能量值。