Dunn Steven M, Rizkallah Pierre J, Baston Emma, Mahon Tara, Cameron Brian, Moysey Ruth, Gao Feng, Sami Malkit, Boulter Jonathan, Li Yi, Jakobsen Bent K
Avidex Limited, Abingdon, Oxon, OX14 4RX, UK.
Protein Sci. 2006 Apr;15(4):710-21. doi: 10.1110/ps.051936406.
The mammalian alpha/beta T cell receptor (TCR) repertoire plays a pivotal role in adaptive immunity by recognizing short, processed, peptide antigens bound in the context of a highly diverse family of cell-surface major histocompatibility complexes (pMHCs). Despite the extensive TCR-MHC interaction surface, peptide-independent cross-reactivity of native TCRs is generally avoided through cell-mediated selection of molecules with low inherent affinity for MHC. Here we show that, contrary to expectations, the germ line-encoded complementarity determining regions (CDRs) of human TCRs, namely the CDR2s, which appear to contact only the MHC surface and not the bound peptide, can be engineered to yield soluble low nanomolar affinity ligands that retain a surprisingly high degree of specificity for the cognate pMHC target. Structural investigation of one such CDR2 mutant implicates shape complementarity of the mutant CDR2 contact interfaces as being a key determinant of the increased affinity. Our results suggest that manipulation of germ line CDR2 loops may provide a useful route to the production of high-affinity TCRs with therapeutic and diagnostic potential.
哺乳动物的α/β T细胞受体(TCR)库在适应性免疫中发挥着关键作用,它通过识别在高度多样化的细胞表面主要组织相容性复合体(pMHC)背景下结合的短的、经过加工的肽抗原。尽管TCR与MHC的相互作用表面广泛,但天然TCR的肽非依赖性交叉反应通常通过细胞介导选择对MHC固有亲和力低的分子来避免。在这里,我们表明,与预期相反,人类TCR的种系编码互补决定区(CDR),即似乎仅接触MHC表面而不接触结合肽的CDR2,可以被工程改造以产生可溶性低纳摩尔亲和力的配体,这些配体对同源pMHC靶标保留了令人惊讶的高度特异性。对一种这样的CDR2突变体的结构研究表明,突变体CDR2接触界面的形状互补性是亲和力增加的关键决定因素。我们的结果表明,操纵种系CDR2环可能为生产具有治疗和诊断潜力的高亲和力TCR提供一条有用的途径。