Pagès F, Ragueneau M, Rottapel R, Truneh A, Nunes J, Imbert J, Olive D
INSERM U119, Marseille, France.
Nature. 1994 May 26;369(6478):327-9. doi: 10.1038/369327a0.
The engagement of CD28 with its ligand B7.1/CD80 results in potent costimulation of T-cell activation initiated through the CD3/T-cell receptor complex. The biochemical basis of CD28 costimulatory function is poorly understood. The signalling pathways used by CD28 are unlike those used by the CD3/T-cell receptor in that they are resistant to cyclosporin A and independent of changes in cyclic AMP concentrations. These differences suggest that each pathway provides unique biochemical information which is required for T-cell activation. We report here that CD28 becomes tyrosine-phosphorylated following interaction with B7.1/CD80, which induces formation of a complex with phosphatidylinositol-3-OH kinase, mediated by the SH2 domains of the p85 subunit of the kinase. Phosphatidylinositol-3-OH kinase is a heterodimer of this 85K regulatory subunit and a 110K catalytic subunit, and is a common substrate for most receptor tyrosine kinases and some cytokine receptors, binding through its SH2 domain to phosphotyrosine in the motif Tyr-X-X-Met in the CD28 sequence, which is highly conserved between human, mouse and rat and lies in the intracellular domain. We show that CD28 mutants that have their kinase-binding site deleted or the tyrosine at position 173 substituted by phenylalanine do not associate with the kinase after CD28 stimulation and cannot stimulate production of interleukin-2. Our results suggest that phosphatidylinositol-3-OH kinase is critical for signalling by CD28.
CD28与其配体B7.1/CD80结合,会通过CD3/T细胞受体复合物引发的T细胞活化产生强大的共刺激作用。目前对CD28共刺激功能的生化基础了解甚少。CD28所使用的信号通路不同于CD3/T细胞受体所使用的信号通路,因为它们对环孢素A具有抗性,且与环磷酸腺苷浓度的变化无关。这些差异表明,每条通路都提供了T细胞活化所需的独特生化信息。我们在此报告,CD28与B7.1/CD80相互作用后会发生酪氨酸磷酸化,这会诱导与磷脂酰肌醇-3-OH激酶形成复合物,该复合物由该激酶p85亚基的SH2结构域介导。磷脂酰肌醇-3-OH激酶是这个85K调节亚基和110K催化亚基的异二聚体,是大多数受体酪氨酸激酶和一些细胞因子受体的共同底物,通过其SH2结构域与CD28序列中基序Tyr-X-X-Met中的磷酸酪氨酸结合,该基序在人、小鼠和大鼠之间高度保守,位于细胞内结构域。我们发现,缺失激酶结合位点或第173位酪氨酸被苯丙氨酸取代的CD28突变体在CD28刺激后不会与该激酶结合,也无法刺激白细胞介素-2的产生。我们的结果表明,磷脂酰肌醇-3-OH激酶对CD28信号传导至关重要。