Moreau Hélène D, Bogle Gib, Bousso Philippe
Institut Pasteur, Dynamics of Immune Responses Unit, Paris, France.
INSERM U1223, Paris, France.
Immunol Cell Biol. 2016 Aug;94(7):680-8. doi: 10.1038/icb.2016.36. Epub 2016 May 10.
The initiation of T-cell responses in lymph nodes requires T cells to integrate signals delivered by dendritic cells (DCs) during long-lasting contacts (synapses) or more transient interactions (kinapses). However, it remains extremely challenging to understand how a specific sequence of contacts established by T cells ultimately dictates T-cell fate. Here, we have coupled a computational model of T-cell migration and interactions with DCs with a real-time, flow cytometry-like representation of T-cell activation. In this model, low-affinity peptides trigger T-cell proliferation through kinapses but we show that this process is only effective under conditions of high DC densities and prolonged antigen availability. By contrast, high-affinity peptides favor synapse formation and a vigorous proliferation under a wide range of antigen presentation conditions. In line with the predictions, decreasing the DC density in vivo selectively abolished proliferation induced by the low-affinity peptide. Finally, our results suggest that T cells possess a biochemical memory of previous stimulations of at least 1-2 days. We propose that the stability of T-cell-DC interactions, apart from their signaling potency, profoundly influences the robustness of T-cell activation. By offering the ability to control parameters that are difficult to manipulate experimentally, the virtual lymph node model provides new possibilities to tackle the fundamental mechanisms that regulate T-cell responses elicited by infections or vaccines.
淋巴结中T细胞反应的启动需要T细胞在持久接触(突触)或更短暂的相互作用(亲突触)过程中整合树突状细胞(DC)传递的信号。然而,要理解T细胞建立的特定接触序列如何最终决定T细胞命运,仍然极具挑战性。在这里,我们将T细胞迁移和与DC相互作用的计算模型与T细胞激活的实时、类似流式细胞术的表示相结合。在这个模型中,低亲和力肽通过亲突触触发T细胞增殖,但我们表明,这个过程仅在高DC密度和延长抗原可用性的条件下有效。相比之下,高亲和力肽在广泛的抗原呈递条件下有利于突触形成和强烈增殖。与预测一致,体内降低DC密度选择性地消除了低亲和力肽诱导的增殖。最后,我们的结果表明,T细胞对先前刺激具有至少1 - 2天的生化记忆。我们提出,T细胞与DC相互作用的稳定性,除了其信号强度外,还深刻影响T细胞激活的稳健性。通过提供控制难以通过实验操作的参数的能力,虚拟淋巴结模型为解决调节感染或疫苗引发的T细胞反应的基本机制提供了新的可能性。