Dienz Oliver, Möller Andreas, Strecker Andreas, Stephan Nadja, Krammer Peter H, Dröge Wulf, Schmitz M Lienhard
Division of Immunochemistry, German Cancer Research Center (Deutsches Krebsforschungszentrum), Im Neuenheimer Feld, Heidelberg, Germany.
J Immunol. 2003 Jan 1;170(1):365-72. doi: 10.4049/jimmunol.170.1.365.
The NF-kappaB activation pathway induced by T cell costimulation uses various molecules including Vav1 and protein kinase C (PKC)theta. Because Vav1 inducibly associates with further proteins including phospholipase C (PLC)gamma1 and Src homology 2 domain-containing leukocyte phosphoprotein of 76 kDa (SLP-76), we investigated their role for NF-kappaB activation in Jurkat leukemia T cell lines deficient for expression of these two proteins. Cells lacking SLP-76 or PLCgamma1 failed to activate NF-kappaB in response to T cell costimulation. In contrast, replenishment of SLP-76 or PLCgamma1 expression restored CD3/CD28-induced IkappaB kinase (IKK) activity as well as NF-kappaB DNA binding and transactivation. PKCtheta activated NF-kappaB in SLP-76- and PLCgamma1-deficient cells, showing that PKCtheta is acting further downstream. In contrast, Vav1-induced NF-kappaB activation was normal in SLP-76(-) cells, but absent in PLCgamma1(-) cells. CD3/CD28-stimulated recruitment of PKCtheta and IKKgamma to lipid rafts was lost in SLP-76- or PLCgamma1-negative cells, while translocation of Vav1 remained unaffected. Accordingly, recruitment of PKCtheta to the immunological synapse strictly relied on the presence of SLP-76 and PLCgamma1, but synapse translocation of Vav1 identified in this study was independent from both proteins. These results show the importance of SLP-76 and PLCgamma1 for NF-kappaB activation and raft translocation of PKCtheta and IKKgamma.
由T细胞共刺激诱导的核因子κB(NF-κB)激活途径使用包括Vav1和蛋白激酶C(PKC)θ在内的多种分子。由于Vav1可诱导地与包括磷脂酶C(PLC)γ1和含Src同源2结构域的76 kDa白细胞磷蛋白(SLP-76)在内的其他蛋白质结合,我们研究了它们在这两种蛋白质表达缺陷的Jurkat白血病T细胞系中对NF-κB激活的作用。缺乏SLP-76或PLCγ1的细胞在响应T细胞共刺激时无法激活NF-κB。相反,补充SLP-76或PLCγ1的表达可恢复CD3/CD28诱导的IκB激酶(IKK)活性以及NF-κB与DNA的结合和反式激活。PKCθ在缺乏SLP-76和PLCγ1的细胞中激活NF-κB,表明PKCθ在更下游起作用。相比之下,Vav1诱导的NF-κB激活在SLP-76(-)细胞中正常,但在PLCγ1(-)细胞中不存在。在缺乏SLP-76或PLCγ1的细胞中,CD3/CD28刺激的PKCθ和IKKγ向脂筏的募集丧失,而Vav1的易位不受影响。因此,PKCθ向免疫突触的募集严格依赖于SLP-76和PLCγ1的存在,但本研究中鉴定的Vav1向突触的易位与这两种蛋白质无关。这些结果表明SLP-76和PLCγ1对NF-κB激活以及PKCθ和IKKγ向脂筏的易位具有重要性。