Guan Jean, Miah S M Shahjahan, Wilson Zachary S, Erick Timothy K, Banh Cindy, Brossay Laurent
Department of Molecular Microbiology and Immunology and Graduate Program in Pathobiology, Division of Biology and Medicine, Brown University, Providence, Rhode Island, United States of America.
PLoS One. 2014 Oct 21;9(10):e111302. doi: 10.1371/journal.pone.0111302. eCollection 2014.
Type I interferons (IFN) are unique cytokines transcribed from intronless genes. They have been extensively studied because of their anti-viral functions. The anti-viral effects of type I IFN are mediated in part by natural killer (NK) cells. However, the exact contribution of type I IFN on NK cell development, maturation and activation has been somewhat difficult to assess. In this study, we used a variety of approaches to define the consequences of the lack of type I interferon receptor (IFNAR) signaling on NK cells. Using IFNAR deficient mice, we found that type I IFN affect NK cell development at the pre-pro NK stage. We also found that systemic absence of IFNAR signaling impacts NK cell maturation with a significant increase in the CD27+CD11b+ double positive (DP) compartment in all organs. However, there is tissue specificity, and only in liver and bone marrow is the maturation defect strictly dependent on cell intrinsic IFNAR signaling. Finally, using adoptive transfer and mixed bone marrow approaches, we also show that cell intrinsic IFNAR signaling is not required for NK cell IFN-γ production in the context of MCMV infection. Taken together, our studies provide novel insights on how type I IFN receptor signaling regulates NK cell development and functions.
I型干扰素(IFN)是由无内含子基因转录而来的独特细胞因子。由于其抗病毒功能,它们已得到广泛研究。I型干扰素的抗病毒作用部分由自然杀伤(NK)细胞介导。然而,I型干扰素对NK细胞发育、成熟和激活的确切作用在一定程度上难以评估。在本研究中,我们使用了多种方法来确定缺乏I型干扰素受体(IFNAR)信号传导对NK细胞的影响。利用IFNAR缺陷小鼠,我们发现I型干扰素在NK细胞前体阶段影响其发育。我们还发现,全身缺乏IFNAR信号传导会影响NK细胞成熟,所有器官中CD27+CD11b+双阳性(DP)亚群显著增加。然而,存在组织特异性,只有肝脏和骨髓中的成熟缺陷严格依赖于细胞内源性IFNAR信号传导。最后,使用过继转移和混合骨髓方法,我们还表明,在巨细胞病毒(MCMV)感染的情况下,NK细胞产生IFN-γ不需要细胞内源性IFNAR信号传导。综上所述,我们的研究为I型干扰素受体信号传导如何调节NK细胞发育和功能提供了新的见解。