Department of Life Sciences and Institute of Genome Sciences, National Yang-Ming University, Taipei, Taiwan.
J Immunol. 2011 Aug 1;187(3):1212-21. doi: 10.4049/jimmunol.1100331. Epub 2011 Jun 29.
NK cell development requires IL-15, which is "trans-presented" to IL-15Rβγ on NK cells by IL-15Rα on other cells. In this study, we report that different levels of IL-15 trans-presentation are required for different NK cell developmental events to reach full maturation status. Because the IL-15Rα intracellular domain has the capacity to recruit signaling molecules, we generated knockin and transgenic (Tg) mice that lack the intracellular domain to assess the role of the IL-15 trans-presentation level independent of the function of this domain. The level of IL-15Rα on various cells of these mice follows the order WT > Tg6 > knockin > Tg1 ≥ knockout. Bone marrow (BM)-derived dendritic cells prepared from these mice induced Stat5 phosphorylation in NK cells. The level of phospho-Stat5 correlated with the level of IL-15Rα on BMDCs, thus offering the opportunity to study quantitative effects of IL-15 trans-presentation on NK cell development in vivo. We found that NK cell homeostasis, mature NK cell differentiation, and acquisition of Ly49 receptor and effector functions require different levels of IL-15 trans-presentation input to achieve full status. All NK cell developmental events examined were quantitatively regulated by the IL-15Rα level of BM-derived and radiation-resistant accessory cells, but not by IL-15Rα of NK cells. We also found that IL-15Rα of radiation-resistant cells was more potent than IL-15Rα of BM-derived accessory cells in support of stage 2 to stage 3 splenic mNK differentiation. In summary, each examined developmental event required a particular level of IL-15 trans-presentation by accessory cells.
自然杀伤 (NK) 细胞的发育需要白细胞介素-15(IL-15),IL-15 通过其他细胞上的 IL-15Rα“转呈”给 NK 细胞上的 IL-15Rβγ。在这项研究中,我们报告称,不同水平的 IL-15 转呈对于不同的 NK 细胞发育事件达到完全成熟状态是必需的。由于 IL-15Rα 细胞内结构域具有募集信号分子的能力,我们生成了敲入和转基因 (Tg) 小鼠,这些小鼠缺乏细胞内结构域,以评估独立于该结构域功能的 IL-15 转呈水平的作用。这些小鼠的各种细胞上的 IL-15Rα 水平遵循 WT > Tg6 > 敲入 > Tg1 ≥ 敲除的顺序。从这些小鼠制备的骨髓 (BM) 来源的树突状细胞在 NK 细胞中诱导 Stat5 磷酸化。磷酸化 Stat5 的水平与 BMDC 上的 IL-15Rα 水平相关,因此提供了在体内研究 IL-15 转呈对 NK 细胞发育的定量影响的机会。我们发现 NK 细胞稳态、成熟 NK 细胞分化以及获得 Ly49 受体和效应功能需要不同水平的 IL-15 转呈输入才能达到完全状态。所有检查的 NK 细胞发育事件都受到 BM 来源和辐射抗性辅助细胞的 IL-15Rα 水平的定量调节,但不受 NK 细胞的 IL-15Rα 调节。我们还发现,辐射抗性细胞的 IL-15Rα 比 BM 来源的辅助细胞的 IL-15Rα 在支持 2 期到 3 期脾 NK 分化中更有效。总之,每个检查的发育事件都需要辅助细胞进行特定水平的 IL-15 转呈。