Krzyzowska Malgorzata, Orłowski Piotr, Bąska Piotr, Bodera Pawel, Zdanowski Robert, Stankiewicz Wanda
Military Institute of Hygiene and Epidemiology, Warsaw, Poland; Department of Preclinical Sciences, Faculty of Veterinary Medicine, Warsaw University of Life Sciences, Warsaw, Poland.
Military Institute of Hygiene and Epidemiology, Warsaw, Poland.
Immunobiology. 2014 Dec;219(12):932-43. doi: 10.1016/j.imbio.2014.07.021. Epub 2014 Aug 5.
Fas receptor-Fas ligand (FasL) signaling is involved in apoptosis of virus-infected cells but increasing evidence accumulates on Fas receptor as a mediator of apoptosis-independent processes such as induction of activating and pro-inflammatory signals. In this study, we examined the role of Fas/FasL pathway in regulation of anti-viral response to genital HSV-2 infection using a murine model of HSV-2 infection applied to C57BL6/J, B6. MRL-Faslpr/J and B6Smn.C3-Faslgld/J mice. HSV-2 infection of Fas- and FasL-deficient mice led to decreased migration of IFN-γ expressing NK cells and CD4+ T cells, but not of γδ T cells, into the vaginal tissue. The vaginal tissues of HSV-2 infected Fas- and FasL-deficient mice showed increased production of IL-10, followed by low expression of the early CD69 activation marker on CD4+ and CD8+ T cells and increased numbers of regulatory T cells (Tregs). Experiments in co-cultures of CD4+ T cells and bone marrow derived dendritic cells showed that lack of bilateral Fas-FasL signaling led to expansion of Tregs and increased production of IL-10 and TGF-β1. Our results demonstrate that Fas/FasL can regulate development of tolerogenic dendritic cells and expansion of Tregs early during HSV-2 infection, which further influences effective anti-viral response.
Fas受体-Fas配体(FasL)信号通路参与病毒感染细胞的凋亡,但越来越多的证据表明Fas受体可作为凋亡非依赖过程的介质,如诱导激活和促炎信号。在本研究中,我们使用应用于C57BL6/J、B6.MRL-Faslpr/J和B6Smn.C3-Faslgld/J小鼠的HSV-2感染小鼠模型,研究了Fas/FasL通路在调节对生殖器HSV-2感染的抗病毒反应中的作用。Fas和FasL缺陷小鼠的HSV-2感染导致表达IFN-γ的NK细胞和CD4+T细胞而非γδT细胞向阴道组织的迁移减少。HSV-2感染的Fas和FasL缺陷小鼠的阴道组织显示IL-10产生增加,随后CD4+和CD8+T细胞上早期CD69激活标志物的表达降低,调节性T细胞(Tregs)数量增加。CD4+T细胞与骨髓来源的树突状细胞共培养实验表明,缺乏双向Fas-FasL信号导致Tregs扩增以及IL-10和TGF-β1产生增加。我们的结果表明,Fas/FasL可在HSV-2感染早期调节耐受性树突状细胞的发育和Tregs的扩增,这进一步影响有效的抗病毒反应。