Department of Clinical Veterinary Medicine, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, China.
Front Immunol. 2018 Feb 2;9:167. doi: 10.3389/fimmu.2018.00167. eCollection 2018.
IFN-τ, a type I interferon produced by the trophoblasts of ruminants, has various important immune functions, including effects on the expression of major histocompatibility complex (MHC) class I (MHC-I). A previous study has reported that IFN-τ promotes the expression of MHC-I molecules on endometrial cells. However, the immunological mechanisms by which IFN-τ regulates MHC-I molecules remain unknown. Here, we investigated which microRNA (miRNAs) may be involved in the regulation of MHC-I molecule expression and function in bovine endometrial epithelial cells (bEECs). By using TargetScan 6.2 and http://www.microRNA.org, two miRNAs were suggested to target the 3'UTR of the bovine MHC-I heavy chain: bta-miR-148b and bta-miR-152. Dual luciferase reporter and miRNA mimic/inhibitor assays suggested that bta-miR-148b/152 were negatively correlated with bovine MHC-I heavy chain genes. The function of the MHC-I heavy chain was then investigated using qRT-PCR, ELISA, western blotting, immunofluorescence, and RNA interference assays in primary bEECs and an endometrial epithelial cell line (BEND). The results demonstrated that bta-miR-148b/152 could promote TLR4-triggered inflammatory responses by targeting the bovine MHC-I heavy chain, and the MHC-I molecule negatively regulated TLR4-induced inflammatory reactions may through the Fps-SHP-2 pathway. Our discovery offers novel insight into negative regulation of the TLR4 pathway and elucidates the mechanism by which bovine MHC-I molecules control congenital inflammatory reactions.
IFN-τ 是反刍动物滋养层细胞产生的 I 型干扰素,具有多种重要的免疫功能,包括对主要组织相容性复合体(MHC)I 类(MHC-I)表达的影响。先前的研究报道 IFN-τ 促进子宫内膜细胞 MHC-I 分子的表达。然而,IFN-τ 调节 MHC-I 分子的免疫机制尚不清楚。在这里,我们研究了哪些 microRNA(miRNA)可能参与调节牛子宫内膜上皮细胞(bEEC)中 MHC-I 分子的表达和功能。通过使用 TargetScan 6.2 和 http://www.microRNA.org,有两种 miRNA 被认为可以靶向牛 MHC-I 重链的 3'UTR:bta-miR-148b 和 bta-miR-152。双荧光素酶报告和 miRNA 模拟/抑制剂测定表明,bta-miR-148b/152 与牛 MHC-I 重链基因呈负相关。然后在原代 bEEC 和子宫内膜上皮细胞系(BEND)中使用 qRT-PCR、ELISA、western blot、免疫荧光和 RNA 干扰测定研究了 MHC-I 重链的功能。结果表明,bta-miR-148b/152 可以通过靶向牛 MHC-I 重链来促进 TLR4 触发的炎症反应,而 MHC-I 分子通过 Fps-SHP-2 途径负调控 TLR4 诱导的炎症反应。我们的发现为 TLR4 途径的负调控提供了新的见解,并阐明了牛 MHC-I 分子控制先天性炎症反应的机制。