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PNAS Plus: A sharp T-cell antigen receptor signaling threshold for T-cell proliferation

机译:PNAS Plus:T细胞增殖的尖锐T细胞抗原受体信号转导阈值

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摘要

T-cell antigen receptor (TCR) signaling is essential for activation, proliferation, and effector function of T cells. Modulation of both intensity and duration of TCR signaling can regulate these events. However, it remains unclear how individual T cells integrate such signals over time to make critical cell-fate decisions. We have previously developed an engineered mutant allele of the critical T-cell kinase zeta-chain-associated protein kinase 70 kDa (Zap70) that is catalytically inhibited by a small molecule inhibitor, thereby blocking TCR signaling specifically and efficiently. We have also characterized a fluorescent reporter Nur77–eGFP transgenic mouse line in which T cells up-regulate GFP uniquely in response to TCR stimulation. The combination of these technologies unmasked a sharp TCR signaling threshold for commitment to cell division both in vitro and in vivo. Further, we demonstrate that this threshold is independent of both the magnitude of the TCR stimulus and Interleukin 2. Similarly, we identify a temporal threshold of TCR signaling that is required for commitment to proliferation, after which T cells are able to proliferate in a Zap70 kinase-independent manner. Taken together, our studies reveal a sharp threshold for the magnitude and duration of TCR signaling required for commitment of T cells to proliferation. These results have important implications for understanding T-cell responses to infection and optimizing strategies for immunomodulatory drug delivery.
机译:T细胞抗原受体(TCR)信号对于T细胞的活化,增殖和效应子功能至关重要。 TCR信号强度和持续时间的调节可以调节这些事件。然而,目前尚不清楚各个T细胞如何随时间整合此类信号以做出关键的细胞命运决定。我们以前已经开发了关键的T细胞激酶与Zeta链相关的蛋白激酶70 kDa(Zap70)的工程突变等位基因,该突变体等位基因被小分子抑制剂催化抑制,从而特异性而有效地阻断TCR信号传导。我们还表征了荧光报告基因Nur77-eGFP转基因小鼠系,其中T细胞响应TCR刺激而独特地上调GFP。这些技术的结合为体外和体内细胞分裂的承诺揭示了一个尖锐的TCR信号阈值。此外,我们证明了该阈值与TCR刺激和白细胞介素2的大小无关。类似地,我们确定了承诺进行增殖所需的TCR信号的时间阈值,之后T细胞能够在Zap70中增殖。激酶非依赖性方式。两者合计,我们的研究揭示了T细胞承诺增殖所需的TCR信号强度和持续时间的严格阈值。这些结果对于理解T细胞对感染的反应以及优化免疫调节药物输送策略具有重要意义。

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