Shore D A, Issafras H, Landais E, Teyton L, Wilson I A
Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
J Mol Biol. 2008 Dec 31;384(5):1190-202. doi: 10.1016/j.jmb.2008.09.069. Epub 2008 Oct 7.
The CD8alphabeta heterodimer interacts with class I pMHC on antigen-presenting cells as a co-receptor for TCR-mediated activation of cytotoxic T cells. To characterize this immunologically important interaction, we used monoclonal antibodies (mAbs) specific to either CD8alpha or CD8beta to probe the mechanism of CD8alphabeta binding to pMHCI. The YTS156.7 mAb inhibits this interaction and blocks T cell activation. To elucidate the molecular basis for this inhibition, the crystal structure of the CD8alphabeta immunoglobulin-like ectodomains were determined in complex with mAb YTS156.7 Fab at 2.7 A resolution. The YTS156.7 epitope on CD8beta was identified and implies that residues in the CDR1 and CDR2-equivalent loops of CD8beta are occluded upon binding to class I pMHC. To further characterize the pMHCI/CD8alphabeta interaction, binding of class I tetramers to CD8alphabeta on the surface of T cells was assessed in the presence of anti-CD8 mAbs. In contrast to YTS156.7, mAb YTS105.18, which is specific for CD8alpha, does not inhibit binding of CD8alphabeta to class I tetramers, indicating the YTS105.18 epitope is not occluded in the pMHCI/CD8alphabeta complex. Together, these data indicate a model for the pMHCI/CD8alphabeta interaction similar to that observed for CD8alphaalpha in the CD8alphaalpha/pMHCI complex, but in which CD8alpha occupies the lower orientation (membrane proximal to the antigen presenting cell), and CD8beta occupies the upper position (membrane distal). The implication of this molecular assembly for the function of CD8alphabeta in T cell activation is discussed.
CD8αβ异二聚体作为TCR介导的细胞毒性T细胞激活的共受体,与抗原呈递细胞上的I类pMHC相互作用。为了表征这种在免疫学上重要的相互作用,我们使用了对CD8α或CD8β特异的单克隆抗体(mAb)来探究CD8αβ与pMHCI结合的机制。YTS156.7单克隆抗体抑制这种相互作用并阻断T细胞激活。为了阐明这种抑制作用的分子基础,以2.7埃的分辨率测定了与mAb YTS156.7 Fab形成复合物的CD8αβ免疫球蛋白样胞外域的晶体结构。确定了CD8β上的YTS156.7表位,这意味着CD8β的互补决定区1(CDR1)和互补决定区2等效环中的残基在与I类pMHC结合时被封闭。为了进一步表征pMHCI/CD8αβ相互作用,在抗CD8单克隆抗体存在的情况下,评估了I类四聚体与T细胞表面CD8αβ的结合。与YTS156.7相反,对CD8α特异的单克隆抗体YTS105.18不抑制CD8αβ与I类四聚体的结合,表明YTS105.18表位在pMHCI/CD8αβ复合物中未被封闭。这些数据共同表明了一种pMHCI/CD8αβ相互作用的模型,类似于在CD8αα/pMHCI复合物中观察到的模型,但其中CD8α占据较低的取向(靠近抗原呈递细胞的膜),而CD8β占据较高的位置(远离膜)。讨论了这种分子组装对CD8αβ在T细胞激活中的功能的影响。