CD28
细胞生物学
T细胞
启动(农业)
刺激
细胞分化
化学
生物
分子生物学
免疫学
生物化学
免疫系统
内分泌学
植物
发芽
基因
作者
Harriet A. Purvis,Jeroen N. Stoop,Jelena Mann,Steven Woods,A.E. Kozijn,Sophie Hambleton,John H. Robinson,John D. Isaacs,Amy E. Anderson,Catharien M. U. Hilkens
出处
期刊:Blood
[American Society of Hematology]
日期:2010-12-02
卷期号:116 (23): 4829-4837
被引量:106
标识
DOI:10.1182/blood-2010-03-272153
摘要
Abstract We show that the strength of T-cell stimulation determines the capability of human CD4+ T cells to become interleukin-17 (IL-17) producers. CD4+ T cells received either high- (THi) or low (TLo)–strength stimulation via anti-CD3/CD28 beads or dendritic cells pulsed with superantigen in the presence of pro-Th17 cytokines IL-1β, transforming growth factor β, and IL-23. We found that TLo, but not THi, stimulation profoundly promoted Th17 responses by enhancing both the relative proportion and total number of Th17 cells. Titration of anti-CD3 revealed that low TCR signaling promoted Th17 cells, but only in the presence of anti-CD28. Impaired IL-17 production in THi cells could not be explained by high levels of Foxp3 or transforming growth factor β–latency-associated peptide expressed by THi cells. Nuclear factor of activated T cells was translocated to the nucleus in both THi and TLo cells, but only bound to the proximal region of the IL-17 promoter in TLo cells. The addition of a Ca2+ ionophore under TLo conditions reversed the pro-Th17 effect, suggesting that high Ca2+ signaling impairs Th17 development. Although our data do not distinguish between priming of naive T cells versus expansion/differentiation of memory T cells, our results clearly establish an important role for the strength of T-cell activation in regulating Th17 responses.
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