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SHP-1 磷酸酶是防止自然杀伤细胞自我杀伤的关键调节因子。

SHP-1 phosphatase is a critical regulator in preventing natural killer cell self-killing.

机构信息

Department of Immunology, University of Manitoba, Winnipeg, Manitoba, Canada.

出版信息

PLoS One. 2012;7(8):e44244. doi: 10.1371/journal.pone.0044244. Epub 2012 Aug 31.

Abstract

Balance of signals generated from the engaged activating and inhibitory surface receptors regulates mature NK cell activities. The inhibitory receptors signal through immunoreceptor tyrosine based inhibitory motifs (ITIM), and recruit phosphatases such as SHP-1 to inhibit NK cell activation. To directly examine the importance of SHP-1 in regulating activities and cell fate of mature NK cells, we used our established lentiviral-based engineering protocol to knock down the SHP-1 protein expression in primary C57BL/6NCrl cells. Gene silencing of the SHP-1 in primary NK cells abrogated the ability of ITIM-containing NK inhibitory receptors to suppress the activation signals induced by NK1.1 activating receptors. We followed the fates of stably transduced SHP-1 silenced primary NK cells over a longer period of time in IL-2 containing cultures. We observed an impaired IL-2 induced proliferation in the SHP-1 knockdown NK cells. More interestingly, these "de-regulated" SHP-1 knockdown NK cells mediated specific self-killing in a real-time live cell microscopic imaging system we developed to study NK cell cytotoxicity in vitro. Selective target recognition of the SHP-1 knockdown NK cells revealed also possible involvement of the SHP-1 phosphatase in regulating other NK functions in mature NK cells.

摘要

来自活化和抑制性表面受体的信号平衡调节成熟 NK 细胞的活性。抑制性受体通过免疫受体酪氨酸抑制基序(ITIM)发出信号,并募集磷酸酶如 SHP-1 来抑制 NK 细胞的激活。为了直接研究 SHP-1 在调节成熟 NK 细胞的活性和细胞命运中的重要性,我们使用我们建立的基于慢病毒的工程方案敲低原代 C57BL/6NCrl 细胞中的 SHP-1 蛋白表达。在原代 NK 细胞中沉默 SHP-1 基因消除了 ITIM 包含的 NK 抑制性受体抑制 NK1.1 激活受体诱导的激活信号的能力。我们在含有 IL-2 的培养物中观察了稳定转导的 SHP-1 沉默的原代 NK 细胞的更长时间的命运。我们观察到 SHP-1 敲低 NK 细胞中 IL-2 诱导的增殖受损。更有趣的是,这些“失调”的 SHP-1 敲低 NK 细胞在我们开发的用于研究体外 NK 细胞细胞毒性的实时活细胞显微镜成像系统中介导特异性自我杀伤。SHP-1 敲低 NK 细胞的选择性靶标识别还揭示了 SHP-1 磷酸酶在调节成熟 NK 细胞中的其他 NK 功能中的可能参与。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2777/3432062/d176970c21e0/pone.0044244.g001.jpg

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