Al-Shamkhani A, Mallett S, Brown M H, James W, Barclay A N
Medical Research Council Cellular Immunology Unit, University of Oxford, Oxford OX1 3RE, United Kingdom.
J Biol Chem. 1997 Feb 21;272(8):5275-82. doi: 10.1074/jbc.272.8.5275.
OX40 ligand (OX40L) and OX40 are members of the tumor necrosis factor and tumor necrosis factor receptor superfamilies, respectively. OX40L is expressed on activated B and T cells and endothelial cell lines, whereas OX40 is expressed on activated T cells. A construct for mouse OX40L was expressed as a soluble protein with domains 3 and 4 of rat CD4 as a tag (sCD4-OX40L). It formed a homotrimer as assessed by chemical cross-linking and gel filtration chromatography. Radiolabeled sCD4-OX40L bound to activated mouse T cells with a high affinity (KD = 0.2-0.4 nM) and dissociated slowly (koff = 4 x 10(-5) s-1). The affinity and kinetics of the OX40L/OX40 interactions were studied using the BIAcoreTM biosensor, which measures macromolecular interactions in real time. The extracellular part of the OX40 antigen was expressed as a soluble monomeric protein and immobilized on the BIAcore sensor chip. sCD4-OX40L bound the OX40 with a high affinity (KD = 3.8 nM), although this was lower than that determined on the surface of activated T cells (KD = 0.2-0.4 nM), where there is likely to be less restriction in mobility of the receptor. In the reverse orientation, sOX40 bound to immobilized sCD4-OX40L with a stoichiometry of 3.1 receptors to one ligand, with low affinity (KD = 190 nM) and had a relatively fast dissociation rate constant (koff = 2 x 10(-2) s-1). Thus if the OX40 receptor is cleaved by proteolysis, it will release any bound ligand and is unlikely to block re-binding of ligand to cell surface OX40 because of the low monomeric affinity.
OX40配体(OX40L)和OX40分别是肿瘤坏死因子和肿瘤坏死因子受体超家族的成员。OX40L在活化的B细胞、T细胞和内皮细胞系上表达,而OX40在活化的T细胞上表达。小鼠OX40L构建体被表达为一种可溶性蛋白,带有大鼠CD4的结构域3和4作为标签(sCD4-OX40L)。通过化学交联和凝胶过滤色谱评估,它形成了同源三聚体。放射性标记的sCD4-OX40L以高亲和力(KD = 0.2 - 0.4 nM)结合活化的小鼠T细胞,并且解离缓慢(koff = 4×10⁻⁵ s⁻¹)。使用BIAcoreTM生物传感器研究了OX40L/OX40相互作用的亲和力和动力学,该传感器可实时测量大分子相互作用。OX40抗原的细胞外部分被表达为可溶性单体蛋白并固定在BIAcore传感器芯片上。sCD4-OX40L以高亲和力(KD = 3.8 nM)结合OX40,尽管这低于在活化T细胞表面测定的亲和力(KD = 0.2 - 0.4 nM),在活化T细胞表面受体的流动性可能受到的限制较小。在相反方向上,sOX40以3.1个受体对一个配体的化学计量比结合固定化的sCD4-OX40L,亲和力低(KD = 190 nM),并且解离速率常数相对较快(koff = 2×10⁻² s⁻¹)。因此,如果OX40受体被蛋白水解切割,它将释放任何结合的配体,并且由于单体亲和力低,不太可能阻止配体重新结合到细胞表面的OX40。