Bikah G, Pogue-Caley R R, McHeyzer-Williams L J, McHeyzer-Williams M G
Department of Immunology, Duke University Medical Center, Durham, NC 27710, USA.
Nat Immunol. 2000 Nov;1(5):402-12. doi: 10.1038/80841.
We evaluated changes in the signaling potentials and proliferative capacity of single antigen-specific T helper (TH) cells during a primary immune response to a protein antigen. At the peak of cellular expansion in vivo all antigen-specific TH cells exhibited a profound block in CD3- and CD4-mediated mobilization of intracellular calcium together with a more global block in T cell receptor-independent capacitative calcium entry (CCE). The proliferative response of these antigen-specific TH cells to anti-CD3, anti-CD28 and IL-2 was also severely blunted. Cross-linking CD69 on a substantial fraction of CD69+ antigen-specific TH cells relieved this block in CCE and restored proliferative capacity in vitro. The CCE rescue operated through a CD69-coupled G protein and required calcium-bound calmodulin and calcineurin. These data reveal critical changes in the responsiveness of antigen-specific TH cells and provide evidence of new mechanisms for the regulation of antigen-specific TH cell development in vivo.
我们评估了在对蛋白质抗原的初次免疫应答过程中,单一抗原特异性辅助性T(TH)细胞的信号转导潜能和增殖能力的变化。在体内细胞扩增的高峰期,所有抗原特异性TH细胞在CD3和CD4介导的细胞内钙动员方面均表现出严重阻滞,同时在不依赖T细胞受体的容量性钙内流(CCE)方面存在更广泛的阻滞。这些抗原特异性TH细胞对抗CD3、抗CD28和白细胞介素-2的增殖反应也严重减弱。在相当一部分CD69+抗原特异性TH细胞上交联CD69可缓解CCE中的这种阻滞,并在体外恢复增殖能力。CCE挽救通过与CD69偶联的G蛋白起作用,并且需要钙结合的钙调蛋白和钙调神经磷酸酶。这些数据揭示了抗原特异性TH细胞反应性的关键变化,并为体内抗原特异性TH细胞发育调控的新机制提供了证据。