Zhou Xu-Yu, Yashiro-Ohtani Yumi, Nakahira Masakiyo, Park Woong Ryeon, Abe Ryo, Hamaoka Toshiyuki, Naramura Mayumi, Gu Hua, Fujiwara Hiromi
Department of Oncology, Osaka University Graduate School of Medicine, Osaka, Japan.
J Immunol. 2002 Apr 15;168(8):3847-54. doi: 10.4049/jimmunol.168.8.3847.
T cell costimulation via CD28 and other (non-CD28) costimulatory molecules induces comparable levels of [(3)H]TdR incorporation, but fundamentally differs in the contribution to IL-2 production. In this study, we investigated the molecular basis underlying the difference between CD28 and non-CD28 costimulation for IL-2 gene expression. Resting T cells from a mutant mouse strain generated by replacing the IL-2 gene with a cDNA encoding green fluorescent protein were stimulated with a low dose of anti-CD3 plus anti-CD28 or anti-non-CD28 (CD5 or CD9) mAbs. CD28 and non-CD28 costimulation capable of inducing potent [(3)H]TdR uptake resulted in high and marginal levels of green fluorescent protein expression, respectively, indicating their differential IL-2 promoter activation. CD28 costimulation exhibited a time-dependent increase in the binding of transcription factors to the NF-AT and NF-kappaB binding sites and the CD28-responsive element of the IL-2 promoter, whereas non-CD28 costimulation did not. Particularly, a striking difference was observed for the binding of NF-kappaB to CD28-responsive element and the NF-kappaB binding site. Decreased NF-kappaB activation in non-CD28 costimulation resulted from the failure to translocate a critical NF-kappaB member, c-Rel, to the nuclear compartment due to the lack of IkappaBbeta inactivation. These observations suggest that unlike CD28 costimulation, non-CD28 costimulation fails to sustain IL-2 promoter activation and that such a failure is ascribed largely to the defect in the activation of c-Rel/NF-kappaB.
通过CD28和其他(非CD28)共刺激分子进行的T细胞共刺激可诱导相当水平的[³H]TdR掺入,但在对IL-2产生的贡献方面存在根本差异。在本研究中,我们调查了CD28和非CD28共刺激在IL-2基因表达方面差异的分子基础。用低剂量抗CD3加抗CD28或抗非CD28(CD5或CD9)单克隆抗体刺激来自通过用编码绿色荧光蛋白的cDNA替换IL-2基因而产生的突变小鼠品系的静息T细胞。能够诱导有效[³H]TdR摄取的CD28和非CD28共刺激分别导致绿色荧光蛋白表达的高水平和边缘水平,表明它们对IL-2启动子的激活存在差异。CD28共刺激显示转录因子与IL-2启动子的NF-AT和NF-κB结合位点以及CD28反应元件的结合呈时间依赖性增加,而非CD28共刺激则没有。特别地,观察到NF-κB与CD28反应元件和NF-κB结合位点的结合存在显著差异。非CD28共刺激中NF-κB激活的降低是由于缺乏IκBβ失活导致关键的NF-κB成员c-Rel无法转运到核区室。这些观察结果表明,与CD28共刺激不同,非CD28共刺激无法维持IL-2启动子的激活,并且这种失败很大程度上归因于c-Rel/NF-κB激活的缺陷。