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CCAAT/增强子结合蛋白γ缺陷小鼠中自然杀伤细胞细胞毒性活性和γ干扰素产生的受损。

Impairment of natural killer cytotoxic activity and interferon gamma production in CCAAT/enhancer binding protein gamma-deficient mice.

作者信息

Kaisho T, Tsutsui H, Tanaka T, Tsujimura T, Takeda K, Kawai T, Yoshida N, Nakanishi K, Akira S

机构信息

Institute for Advanced Medical Sciences, Hyogo College of Medicine, Hyogo 663-8501, Japan.

出版信息

J Exp Med. 1999 Dec 6;190(11):1573-82. doi: 10.1084/jem.190.11.1573.

Abstract

We have investigated in vivo roles of CCAAT/enhancer binding protein gamma (C/EBPgamma) by gene targeting. C/EBPgamma-deficient (C/EBPgamma(2/-)) mice showed a high mortality rate within 48 h after birth. To analyze the roles of C/EBPgamma in lymphoid lineage cells, bone marrow chimeras were established. C/EBPgamma(2/-) chimeras showed normal T and B cell development. However, cytolytic functions of their splenic natural killer (NK) cells after stimulation with cytokines such as interleukin (IL)-12, IL-18, and IL-2 were significantly reduced as compared with those of control chimera NK cells. In addition, the ability of C/EBPgamma(-/-) chimera splenocytes to produce interferon (IFN)-gamma in response to IL-12 and/or IL-18 was markedly impaired. NK cells could be generated in vitro with normal surface marker expression in the presence of IL-15 from C/EBPgamma(2/-) newborn spleen cells. However, they also showed lower cytotoxic activity and IFN-gamma production when stimulated with IL-12 plus IL-18 than control NK cells, as observed in C/EBPgamma(2/-) chimera splenocytes. In conclusion, our study reveals that C/EBPgamma is a critical transcription factor involved in the functional maturation of NK cells.

摘要

我们通过基因靶向技术研究了CCAAT/增强子结合蛋白γ(C/EBPγ)在体内的作用。C/EBPγ缺陷(C/EBPγ(2/-))小鼠在出生后48小时内死亡率很高。为了分析C/EBPγ在淋巴谱系细胞中的作用,我们构建了骨髓嵌合体。C/EBPγ(2/-)嵌合体的T细胞和B细胞发育正常。然而,与对照嵌合体NK细胞相比,其脾脏自然杀伤(NK)细胞在用白细胞介素(IL)-12、IL-18和IL-2等细胞因子刺激后的溶细胞功能显著降低。此外,C/EBPγ(-/-)嵌合体脾细胞响应IL-12和/或IL-18产生干扰素(IFN)-γ的能力明显受损。在IL-15存在的情况下,C/EBPγ(2/-)新生脾细胞可在体外产生具有正常表面标志物表达的NK细胞。然而,与C/EBPγ(2/-)嵌合体脾细胞一样,当用IL-12加IL-18刺激时,它们的细胞毒性活性和IFN-γ产生也低于对照NK细胞。总之,我们的研究表明C/EBPγ是参与NK细胞功能成熟的关键转录因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6706/2195736/5f23fff48eeb/JEM990920.f1a.jpg

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