首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Competing feedback loops shape IL-2 signaling between helper and regulatory T lymphocytes in cellular microenvironments
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Competing feedback loops shape IL-2 signaling between helper and regulatory T lymphocytes in cellular microenvironments

机译:竞争性反馈环在细胞微环境中塑造辅助和调节性T淋巴细胞之间的IL-2信号传导

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Cytokines are pleiotropic and readily diffusible messenger molecules, raising the question of how their action can be confined to specific target cells. The T cell cytokine interleukin-2 (IL-2) is essential for the homeostasis of regulatory T (Treg) cells that suppress (auto) immunity and stimulates immune responses mediated by conventional T cells. We combined mathematical modeling and experiments to dissect the dynamics of the IL-2 signaling network that links the prototypical IL-2 producers, conventional T helper (Th) cells, and Treg cells. We show how the IL-2-induced upregulation of high-affinity IL-2 receptors (IL-2R) establishes a positive feedback loop of IL-2 signaling. This feedback mediates a digital switch for the proliferation of Th cells and functions as an analog amplifier for the IL-2 uptake capacity of Treg cells. Unlike other positive feedbacks in cell signaling that augment signal propagation, the IL-2/IL-2R loop enhances the capture of the signal molecule and its degradation. Thus Treg and Th cells can compete for IL-2 and restrict its range of action through efficient cellular uptake. Depending on activation status and spatial localization of the cells, IL-2 may be consumed exclusively by Treg or Th cells, or be shared between them. In particular, a Treg cell can deprive a stimulated Th cell of its IL-2, but only when the cells are located in close proximity, within a few tens of micrometers. The present findings explain how IL-2 can play two disctinct roles in immune regulation and point to a hitherto largely unexplored spatiotemporal complexity of cytokine signaling.
机译:细胞因子是多效性且易于扩散的信使分子,这就提出了如何将它们的作用限制在特定靶细胞中的问题。 T细胞细胞因子白介素2(IL-2)对于调节性T(Treg)细胞的动态平衡至关重要,该调节性T细胞抑制(自身)免疫力并刺激常规T细胞介导的免疫反应。我们结合数学建模和实验来剖析连接原型IL-2生产者,常规T辅助(Th)细胞和Treg细胞的IL-2信号网络的动力学。我们显示了IL-2诱导的高亲和力IL-2受体(IL-2R)上调如何建立IL-2信号传导的正反馈回路。该反馈介导了Th细胞增殖的数字开关,并充当Treg细胞的IL-2摄取能力的模拟放大器。与细胞信号传递中其他增加信号传播的正反馈不同,IL-2 / IL-2R环增强了信号分子的捕获及其降解。因此,Treg和Th细胞可以竞争IL-2,并通过有效的细胞摄取来限制其作用范围。根据细胞的激活状态和空间定位,IL-2可能仅被Treg或Th细胞消耗,或在它们之间共享。尤其是,Treg细胞可以剥夺受刺激的Th细胞的IL-2,但仅当这些细胞位于几十微米内非常接近的情况下。目前的发现解释了IL-2如何在免疫调节中发挥两个不同的作用,并指出了迄今很大程度上尚未探索的细胞因子信号传导的时空复杂性。

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