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来自白细胞介素-7缺陷小鼠的NK1.1+ T细胞具有正常的分布和选择,但细胞因子产生受损。

NK1.1+ T cells from IL-7-deficient mice have a normal distribution and selection but exhibit impaired cytokine production.

作者信息

Vicari A P, Herbelin A, Leite-de-Moraes M C, Von Freeden-Jeffry U, Murray R, Zlotnik A

机构信息

DNAX Research Institute, Palo Alto, CA 94304-1104, USA.

出版信息

Int Immunol. 1996 Nov;8(11):1759-66. doi: 10.1093/intimm/8.11.1759.

Abstract

Particular subsets of T cells expressing the NK1.1 antigen have been proposed to play an immune regulatory role by their fast and strong production of cytokines, in particular IL-4. We sought to determine factors driving the functional differentiation of NK1.1+ T cells. Since NK1.1+ T cells are exquisitely sensitive to IL-7 stimulation, we analyzed the development, selection and IL-4 production of NK1.1+ T cells in IL-7-deficient mice (IL-7-/-m mice). Besides a sharp reduction of all T cell subsets, NK1.1+ T cells develop at normal relative frequencies in IL-7-/- mice. They also undergo a normal selection process, as revealed by the biased V beta TCR repertoire identical to the one in IL-7+/+ mice. However, NK1.1+ T cells from IL-7-/- mice were found to be impaired in IL-4 and IFN-gamma production in in vitro and in vivo models. In addition, IL-7 was able to restore IL-4 production by NK1.1+ thymocytes from IL-7-/- mice. Finally, IL-7 but not IL-2 or IL-4 was able to maintain and increase IL-4 production by NK1.1+ thymocytes from normal mice. These data suggest that the functional maturation of NK1.1+ T cells requires a cytokine-driven differentiation process, in which IL-7 plays a major role.

摘要

表达NK1.1抗原的特定T细胞亚群被认为通过快速且大量产生细胞因子(特别是IL-4)发挥免疫调节作用。我们试图确定驱动NK1.1 + T细胞功能分化的因素。由于NK1.1 + T细胞对IL-7刺激极为敏感,我们分析了IL-7缺陷小鼠(IL-7 - / - m小鼠)中NK1.1 + T细胞的发育、选择及IL-4产生情况。除了所有T细胞亚群急剧减少外,NK1.1 + T细胞在IL-7 - / - 小鼠中以正常相对频率发育。它们也经历正常的选择过程,这由与IL-7 + / +小鼠中相同的偏向性VβTCR库所揭示。然而,在体外和体内模型中,发现来自IL-7 - / - 小鼠的NK1.1 + T细胞在IL-4和IFN-γ产生方面存在缺陷。此外,IL-7能够恢复来自IL-7 - / - 小鼠的NK1.1 + 胸腺细胞的IL-4产生。最后,IL-7而非IL-2或IL-4能够维持并增加正常小鼠NK1.1 + 胸腺细胞的IL-4产生。这些数据表明,NK1.1 + T细胞的功能成熟需要细胞因子驱动的分化过程,其中IL-7起主要作用。

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