Axtell Robert C, Xu Liang, Barnum Scott R, Raman Chander
Department of Medicine, University of Alabama at Birmingham, 1530 Third Avenue South, Birmingham, AL 35294, USA.
J Immunol. 2006 Dec 15;177(12):8542-9. doi: 10.4049/jimmunol.177.12.8542.
Regulating the differentiation and persistence of encephalitogenic T cells is critical for the development of experimental autoimmune encephalomyelitis (EAE). We reported recently that CD5 has an engagement-dependent prosurvival activity in T cells that played a direct role in the induction and progression EAE. We predicted that CD5 regulates T cell apoptosis/survival through the activation of CK2, a prosurvival serine/threonine kinase that associates with the receptor. To test this hypothesis, we generated mice expressing CD5 with the inability to bind and activate CK2 and assessed their susceptibility to EAE. We found mice deficient in CD5-CK2 signaling pathway were mostly resistant to the development of EAE. Resistance to EAE was associated with a dramatic decrease in a population of effector infiltrating Th cells that coexpress IFN-gamma and IL-17 and, to a lesser extent, cells that express IFN-gamma or IL-17 in draining lymph nodes and spinal cords. We further show that T cells deficient in CD5-CK2 signaling hyperproliferate following primary stimulation; however, following restimulation, they rapidly develop nonresponsiveness and exhibit elevated activation-induced cell death. Our results provide a direct role for CD5-CK2 pathway in T cell activation and persistence of effector T cells in neuroinflammatory disease. This study predicts that targeting of IFN-gamma(+)/IL-17(+) infiltrating Th cells will be useful for the treatment of multiple sclerosis and other systemic autoimmune diseases.
调控致脑炎性T细胞的分化和持久性对于实验性自身免疫性脑脊髓炎(EAE)的发展至关重要。我们最近报道,CD5在T细胞中具有一种依赖于结合的促生存活性,在EAE的诱导和进展中发挥直接作用。我们预测CD5通过激活CK2来调节T细胞的凋亡/存活,CK2是一种与该受体相关的促生存丝氨酸/苏氨酸激酶。为了验证这一假设,我们构建了表达无法结合和激活CK2的CD5的小鼠,并评估它们对EAE的易感性。我们发现缺乏CD5-CK2信号通路的小鼠大多对EAE的发展具有抗性。对EAE的抗性与共表达IFN-γ和IL-17的效应浸润性Th细胞群体的显著减少相关,在较小程度上也与引流淋巴结和脊髓中表达IFN-γ或IL-17的细胞减少有关。我们进一步表明,缺乏CD5-CK2信号的T细胞在初次刺激后过度增殖;然而,再次刺激后,它们迅速产生无反应性并表现出激活诱导的细胞死亡增加。我们的结果表明CD5-CK2通路在T细胞激活和神经炎性疾病中效应T细胞的持久性方面具有直接作用。这项研究预测,靶向IFN-γ(+)/IL-17(+)浸润性Th细胞将有助于治疗多发性硬化症和其他全身性自身免疫性疾病。