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IFN-γ induces aberrant CD49b+ NK cell recruitment through regulating CX3CL1: a novel mechanism by which IFN-γ provokes pregnancy failure

机译:IFN- γ通过调节CX3CL1诱导CD49b + NK细胞异常募集:IFN- γ引起妊娠失败的新机制

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Interferon- γ (IFN- γ ), a pleiotropic lymphokine, has important regulatory effects on many cell types. Although IFN- γ is essential for the initiation of uterine vascular modifications and maintenance of decidual integrity, IFN- γ administration can also cause pregnancy failure in many species. However, little is known about the effector mechanisms involved. In this study, using an IFN- γ -induced abortion mouse model, we reported that no Dolichos biflorus agglutinin lectin-positive uterine natural killer (uNK) cells were observed in the uteri from IFN- γ -induced abortion mice. By contrast, the percentage of CD3?CD49b+ NK cells in the uterus and blood from a foetal resorption group was significantly higher than that of the control group. Similarly, significantly upregulated expression of CD49b (a pan-NK cell marker), CX3CL1 and CX3CR1 (CX3CL1 receptor) was detected in the uteri of IFN- γ -induced abortion mice. Using isolated uterine stromal cells, we showed that upregulated expression of CX3CL1 by IFN- γ was dependent on a Janus family kinase 2-signal transducers and activators of transcription 1 (JAK2-STAT1) pathway. We further demonstrated the chemotactic activity of CX3CL1 in uterine stromal cell conditioned medium on primary splenic NK cells. Finally, we observed increased recruitment of CD49b+ NK cells into the endometrium after exogenous CX3CL1 administration. Collectively, our findings indicate that IFN- γ can significantly increase uterine CX3CL1 expression via activation of the JAK2-STAT1 pathway, thus inducing CD49b+ NK cell uterine homing, and eventually provoke foetal loss. Thus, we provide a new line of evidence correlating the deleterious effects of IFN- γ on pregnancy with the aberrant regulation of CX3CL1 and CD49b+ NK cells. Cell Death and Disease (2014) 5, e1512; doi: 10.1038/cddis.2014.470 ; published online 6 November 2014
机译:干扰素-γ(IFN-γ)是一种多效淋巴因子,对许多细胞类型都有重要的调节作用。尽管IFN-γ对于启动子宫血管修饰和维持蜕膜完整性必不可少,但IFN-γ的使用也会在许多物种中导致妊娠失败。然而,关于所涉及的效应器机制知之甚少。在这项研究中,使用IFN-γ诱导的流产小鼠模型,我们报道了在IFN-γ诱导的流产小鼠的子宫中未观察到Dolichos biflorus凝集素凝集素阳性子宫自然杀伤细胞(uNK)。相比之下,胎儿吸收组子宫和血液中CD3 ? CD49b + NK细胞的百分比显着高于对照组。同样,在IFN-γ诱导的流产小鼠子宫中检测到CD49b(pan-NK细胞标记),CX3CL1和CX3CR1(CX3CL1受体)的表达明显上调。使用分离的子宫基质细胞,我们显示IFN-γ上调CX3CL1的表达取决于Janus家族激酶2信号转导子和转录激活因子1(JAK2-STAT1)的通路。我们进一步证明了CX3CL1在原代脾NK细胞的子宫基质细胞条件培养基中的趋化活性。最后,我们观察到外源性CX3CL1给药后CD49b + NK细胞向子宫内膜的募集增加。我们的研究结果表明,IFN-γ可以通过激活JAK2-STAT1途径显着增加子宫CX3CL1的表达,从而诱导CD49b + NK细胞子宫归巢,并最终引起胎儿丢失。因此,我们提供了一条新的证据,表明IFN-γ对妊娠的有害作用与CX3CL1和CD49b + NK细胞的异常调节有关。 Cell Death and Disease(2014)5,e1512; doi:10.1038 / cddis.2014.470; 2014年11月6日在线发布

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