Brown M H, Preston S, Barclay A N
MRC Cellular Immunology Unit, Sir William Dunn School of Pathology, Oxford.
Eur J Immunol. 1995 Dec;25(12):3222-8. doi: 10.1002/eji.1830251204.
The ligand for the T cell antigen CD2 is CD48 in rodents, but CD58 in humans. The extracellular parts of these three antigens are structurally related in that all contain two immunoglobulin superfamily (IgSF) domains. There have been reports of alternative ligands for CD2 in the human, but not so far in rodents. We describe the analysis of ligands for rat CD2 and CD48 using fluorescent beads capable of displaying a high ligand density and detecting low-affinity interactions like that of CD2 with CD48 (Kd = 60-90 microM). Monovalent chimeric proteins containing the two IgSF domains of rat CD48 or CD2 and domains 3 and 4 of rat CD4 (CD4d3+4) were anchored to fluorescent covaspheres via a CD4 monoclonal antibody (mAb) with the CD48 or CD2 domains available for ligand binding. Multivalent CD48-CD4d3+4 covaspheres gave strong specific binding to rat CD2 expressed on the surface of transfected Jurkat cells. CD48-CD4d3+4 was compared with CD48-IgG and CD48-IgM as tools for detecting binding at the cell surface. Soluble divalent CD48-IgG and decavalent CD48-IgM bound to soluble CD2 with a Koff of around 10(-3) s-1 as determined using a BIAcore biosensor. However, binding to cells by CD48-IgG and CD48-IgM was only detectable when they were immobilized on covaspheres and represented no increase in sensitivity over CD48-CD4 covaspheres when tested for binding to cells expressing high and low levels of CD2. CD48-CD4d3+4 covaspheres only bound to rat cells expressing CD2. In the reverse orientation, bindign of CD2-CD4d3+4 covaspheres was dependent on expression of CD48. Pre-incubation of cells with CD2 or CD48 mAb abolished all binding of CD48-CD4d3+4 or CD2-CD4d3+4, respectively. The data provide no evidence for an alternative ligand for rat CD2 or CD48.
T细胞抗原CD2在啮齿动物中的配体是CD48,而在人类中是CD58。这三种抗原的细胞外部分在结构上相关,因为它们都包含两个免疫球蛋白超家族(IgSF)结构域。有报道称人类中存在CD2的替代配体,但迄今为止在啮齿动物中尚未发现。我们描述了使用能够展示高配体密度并检测低亲和力相互作用(如CD2与CD48之间的相互作用,解离常数Kd = 60 - 90微摩尔)的荧光珠对大鼠CD2和CD48配体的分析。含有大鼠CD48或CD2的两个IgSF结构域以及大鼠CD4的结构域3和4(CD4d3 + 4)的单价嵌合蛋白通过CD4单克隆抗体(mAb)锚定在荧光共聚物微球上,使CD48或CD2结构域可用于配体结合。多价CD48 - CD4d3 + 4共聚物微球与转染的Jurkat细胞表面表达的大鼠CD2有强烈的特异性结合。将CD48 - CD4d3 + 4与CD48 - IgG和CD48 - IgM作为检测细胞表面结合的工具进行比较。使用BIAcore生物传感器测定,可溶性二价CD48 - IgG和十价CD48 - IgM与可溶性CD2结合,解离速率常数Koff约为10^(-3) s^(-1)。然而,只有当CD48 - IgG和CD48 - IgM固定在共聚物微球上时才能检测到它们与细胞的结合,并且在检测与高表达和低表达CD2的细胞结合时,其灵敏度并不比CD48 - CD4共聚物微球高。CD48 - CD4d3 + 4共聚物微球仅与表达CD2的大鼠细胞结合。在相反方向上,CD2 - CD4d3 + 4共聚物微球的结合取决于CD48的表达。用CD2或CD48单克隆抗体对细胞进行预孵育分别消除了CD48 - CD4d3 + 4或CD2 - CD4d3 + 4的所有结合。数据没有提供大鼠CD2或CD48存在替代配体的证据。