Junghans Victoria, Chouliara Manto, Santos Ana Mafalda, Hatherley Deborah, Petersen Jan, Dam Tommy, Svensson Lena M, Rossjohn Jamie, Davis Simon J, Jönsson Peter
Department of Chemistry, Lund University, 221 00 Lund, Sweden
Department of Chemistry, Lund University, 221 00 Lund, Sweden.
J Cell Sci. 2020 Aug 3;133(15):jcs245985. doi: 10.1242/jcs.245985.
The affinity of T-cell receptors (TCRs) for major histocompatibility complex molecules (MHCs) presenting cognate antigens likely determines whether T cells initiate immune responses, or not. There exist few measurements of two-dimensional (2D) TCR-MHC interactions, and the effect of auxiliary proteins on binding is unexplored. Here, Jurkat T-cells expressing the MHC molecule HLA-DQ8-glia-α1 and the ligand of an adhesion protein (rat CD2) were allowed to bind supported lipid bilayers (SLBs) presenting fluorescently labelled L3-12 TCR and rat CD2, allowing measurements of binding unconfounded by cell signaling effects or co-receptor binding. The 2D for L3-12 TCR binding to HLA-DQ8-glia-α1, of 14±5 molecules/μm (mean±s.d.), was only marginally influenced by including CD2 up to ∼200 bound molecules/μm but higher CD2 densities reduced the affinity up to 1.9-fold. Cell-SLB contact size increased steadily with ligand density without affecting binding for contacts at up to ∼20% of total cell area, but beyond this lamellipodia appeared, giving an apparent increase in bound receptors of up to 50%. Our findings show how parameters other than the specific protein-protein interaction can influence binding behavior at cell-cell contacts.
T细胞受体(TCRs)对呈递同源抗原的主要组织相容性复合体分子(MHCs)的亲和力可能决定T细胞是否引发免疫反应。二维(2D)TCR-MHC相互作用的测量数据很少,辅助蛋白对结合的影响也尚未得到探索。在这里,使表达MHC分子HLA-DQ8-神经胶质-α1和一种粘附蛋白(大鼠CD2)配体的Jurkat T细胞与呈现荧光标记的L3-12 TCR和大鼠CD2的支持脂质双层(SLB)结合,从而能够在不受细胞信号效应或共受体结合干扰的情况下测量结合情况。L3-12 TCR与HLA-DQ8-神经胶质-α1结合的二维亲和力为14±5个分子/μm(平均值±标准差),在CD2结合分子数高达约200个/μm时,其受到的影响很小,但更高的CD2密度会使亲和力降低至1.9倍。细胞与SLB的接触面积随着配体密度的增加而稳步增加,在接触面积占细胞总面积的比例高达约20%时,对结合没有影响,但超过这个比例时会出现片状伪足,使结合受体的数量明显增加高达50%。我们的研究结果表明,除了特定的蛋白质-蛋白质相互作用之外,其他参数如何影响细胞-细胞接触处的结合行为。