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细胞因子的分泌与 NK 细胞中细胞毒性颗粒的分泌不同。

Cytokine secretion is distinct from secretion of cytotoxic granules in NK cells.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland, Australia.

出版信息

J Immunol. 2010 May 1;184(9):4852-62. doi: 10.4049/jimmunol.0803954. Epub 2010 Apr 5.

Abstract

NK cells are renowned for their ability to kill virally infected or transformed host cells by release of cytotoxic granules containing granzymes and perforin. NK cells also have important regulatory capabilities chiefly mediated by secretion of cytokines, such as IFN-gamma and TNF. The secretory pathway for the release of cytokines in NK cells is unknown. In this study, we show localization and trafficking of IFN-gamma and TNF in human NK cells in compartments and vesicles that do not overlap with perforin or other late endosome granule markers. Cytokines in post-Golgi compartments colocalized with markers of the recycling endosome (RE). REs are functionally required for cytokine release because inactivation of REs or mutation of RE-associated proteins Rab11 and vesicle-associated membrane protein-3 blocked cytokine surface delivery and release. In contrast, REs are not needed for release of perforin from preformed granules but may be involved at earlier stages of granule maturation. These findings suggest a new role for REs in orchestrating secretion in NK cells. We show that the cytokines IFN-gamma and TNF are trafficked and secreted via a different pathway than perforin. Although perforin granules are released in a polarized fashion at lytic synapses, distinct carriers transport both IFN-gamma and TNF to points all over the cell surface, including within the synapse, for nonpolarized release.

摘要

自然杀伤 (NK) 细胞以其通过释放包含颗粒酶和穿孔素的细胞毒性颗粒杀死病毒感染或转化的宿主细胞的能力而闻名。NK 细胞还具有重要的调节能力,主要通过细胞因子如 IFN-γ和 TNF 的分泌来介导。NK 细胞中细胞因子释放的分泌途径尚不清楚。在这项研究中,我们显示 IFN-γ和 TNF 在人类 NK 细胞中的定位和运输在与穿孔素或其他晚期核内体颗粒标记物不重叠的隔室和小泡中。高尔基体后隔室中的细胞因子与再循环内体 (RE) 的标记物共定位。RE 对于细胞因子释放是功能必需的,因为 RE 的失活或 RE 相关蛋白 Rab11 和膜相关蛋白-3 的突变阻断了细胞因子的表面传递和释放。相比之下,RE 对于预先形成的颗粒中穿孔素的释放不是必需的,但可能参与颗粒成熟的早期阶段。这些发现表明 RE 在协调 NK 细胞分泌中的新作用。我们表明,细胞因子 IFN-γ和 TNF 通过不同于穿孔素的途径进行运输和分泌。尽管穿孔素颗粒以极化方式在裂解突触中释放,但不同的载体将 IFN-γ和 TNF 运输到细胞表面的各个部位,包括突触内,进行非极化释放。

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