Mareeva Tatiana, Lebedeva Tatiana, Anikeeva Nadia, Manser Tim, Sykulev Yuri
Department of Microbiology and Immunology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
J Biol Chem. 2004 Oct 22;279(43):44243-9. doi: 10.1074/jbc.M407021200. Epub 2004 Aug 9.
Antibodies recognizing peptide bound to a major histocompatibility complex (MHC) protein usually have a higher affinity for the composite peptide.MHC (pMHC) ligand than T cell receptors (TCR) with the same specificity. Because the solvent-accessible peptide area constitutes only a small portion of the contacting pMHC surface, we hypothesized that the contribution of the MHC moiety to the TCR-pMHC complex stability is limited, ensuring a small increment of the binding energy delivered by the peptide to be distinguishable by the TCR or the peptide-specific antibody. This suggests that the gain in affinity of the antibody-pMHC interaction can be achieved through an increase in the on-rate without a significant change in the off-rate of the interaction. To test the hypothesis, we have analyzed the binding of an ovalbumin peptide (pOV8) and its variants associated with soluble H-2Kb protein to the 25-D1.16 monoclonal antibody and compared it with the binding of the same pMHC complexes to the OT-1 TCR. This comparison revealed a substantially higher on-rate of the antibody-pMHC interaction compared with the TCR-pMHC interaction. In contrast, both the antibody and the TCR-pMHC complexes exhibited comparably fast off-rates. Sequencing of the 25-D1.16 VH and VL genes showed that they have very few somatic mutations and those occur mainly in framework regions. We propose that the above features constitute a signature of the recognition of MHC-bound peptide antigens by TCR and TCR-like antibodies, which could explain why the latter are rarely produced in vivo.
识别与主要组织相容性复合体(MHC)蛋白结合的肽段的抗体,通常对复合肽-MHC(pMHC)配体的亲和力高于具有相同特异性的T细胞受体(TCR)。由于溶剂可及的肽段区域仅占接触的pMHC表面的一小部分,我们推测MHC部分对TCR-pMHC复合物稳定性的贡献有限,这确保了肽段传递的结合能的微小增加能够被TCR或肽段特异性抗体区分开来。这表明抗体-pMHC相互作用亲和力的提高可以通过结合速率的增加来实现,而相互作用的解离速率没有显著变化。为了验证这一假设,我们分析了卵清蛋白肽(pOV8)及其与可溶性H-2Kb蛋白相关的变体与25-D1.16单克隆抗体的结合,并将其与相同pMHC复合物与OT-1 TCR的结合进行比较。这种比较表明,与TCR-pMHC相互作用相比,抗体-pMHC相互作用的结合速率显著更高。相反,抗体和TCR-pMHC复合物都表现出相当快的解离速率。对25-D1.16 VH和VL基因的测序表明,它们几乎没有体细胞突变,且这些突变主要发生在框架区域。我们提出,上述特征构成了TCR和TCR样抗体识别MHC结合肽抗原的特征,这可以解释为什么后者在体内很少产生。