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Editors choice: Guanosine and its modified derivatives are endogenous ligands for TLR7

机译:编辑选择:鸟苷及其修饰的衍生物是TLR7的内源性配体

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摘要

Toll-like receptor (TLR) 7and 8 were considered to recognize single-strand RNA (ssRNA) from viruses. Although these receptors also respond to synthetic small chemical ligands, such as CL075 and R848, it remains to be determined whether these receptors sense natural small molecules or not. In the structure of human TLR8 (huTLR8) with ssRNA, there are two ligand-binding sites: one binds a uridine and the other binds an oligoribonucleotide (ORN). This finding demonstrates that huTLR8 recognizes degradation products of ssRNA, suggesting the presence of natural small ligands. We here show that TLR7 works as the sensor for guanosine (G)/2′-deoxyguanosine (dG) in the presence of ORN where ORN strengthens TLR7 interaction with G/dG. In addition, modified nucleosides such as 7-methylguanosine, 8-hydroxyguanosine (8-OHG) and 8-hydroxydeoxyguanosine (8-OHdG) activated TLR7 with ORNs. Importantly, 8-OHdG—a well-known oxidative DNA damage marker with unknown function—induced strong cytokine production comparable to G and dG both in mouse and human immune cells. Although 8-OHdG bound TLR7/ORN with lower affinity than dG did in isothermal titration calorimetry, administered 8-OHdG was metabolically more stable than dG in the serum, indicating that 8-OHdG acts on TLR7 as an endogenous ligand in vivo. To address a role of G analogs in the disease state, we also examined macrophages from Unc93b1 D34A/D34A mice, which suffer from TLR7-dependent systemic inflammation, and found that Unc93b1 D34A/D34A macrophages showed significantly enhanced response to G alone or 8-OHdG with ORN. In conclusion, our results provide evidence that G, dG, 8-OHG and 8-OHdG are novel endogenous ligands for TLR7.
机译:Toll样受体(TLR)7和8被认为可以识别病毒的单链RNA(ssRNA)。尽管这些受体还对合成的小化学配体(例如CL075和R848)作出反应,但这些受体是否感测天然小分子仍有待确定。在具有ssRNA的人TLR8(huTLR8)的结构中,有两个配体结合位点:一个结合尿苷,另一个结合寡核糖核苷酸(ORN)。这一发现表明huTLR8识别ssRNA的降解产物,表明存在天然的小配体。我们在这里显示,在存在ORN的情况下,TLR7充当鸟嘌呤(G)/ 2'-脱氧鸟苷(dG)的传感器,其中ORN加强了TLR7与G / dG的相互作用。此外,修饰的核苷,例如7-甲基鸟苷,8-羟基鸟苷(8-OHG)和8-羟基脱氧鸟苷(8-OHdG)用ORN激活了TLR7。重要的是,在小鼠和人类免疫细胞中,8-OHdG(一种功能未知的著名的氧化DNA损伤标记物)诱导了与G和dG相当的强大细胞因子产生。尽管在等温滴定量热法中,8-OHdG以比dG低的亲和力结合了TLR7 / ORN,但在血清中给​​药的8-OHdG在代谢上比dG稳定,表明8-OHdG作为体内内源性配体作用于TLR7。为了探讨G类似物在疾病状态中的作用,我们还检查了Unc93b1 D34A / D34A 小鼠的巨噬细胞,这些小鼠患有TLR7依赖性全身炎症,并发现Unc93b1 D34A / D34A <巨噬细胞显示对单独的G或使用ORN的8-OHdG的反应明显增强。总之,我们的结果提供了证据,表明G,dG,8-OHG和8-OHdG是TLR7的新型内源性配体。

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