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A minimal RNA ligand for potent RIG-I activation in living mice

机译:在活小鼠中有效激活RIG-I的最小RNA配体

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摘要

We have developed highly potent synthetic activators of the vertebrate immune system that specifically target the RIG-I receptor. When introduced into mice, a family of short, triphosphorylated stem-loop RNAs (SLRs) induces a potent interferon response and the activation of specific genes essential for antiviral defense. Using RNA sequencing, we provide the first in vivo genome-wide view of the expression networks that are initiated upon RIG-I activation. We observe that SLRs specifically induce type I interferons, subsets of interferon-stimulated genes (ISGs), and cellular remodeling factors. By contrast, polyinosinic:polycytidylic acid [poly(I:C)], which binds and activates multiple RNA sensors, induces type III interferons and several unique ISGs. The short length (10 to 14 base pairs) and robust function of SLRs in mice demonstrate that RIG-I forms active signaling complexes without oligomerizing on RNA. These findings demonstrate that SLRs are potent therapeutic and investigative tools for targeted modulation of the innate immune system.
机译:我们已经开发了针对脊椎动物RIG-I受体的脊椎动物免疫系统的高效合成激活剂。当引入小鼠体内时,短的三磷酸化茎环RNA(SLR)家族会诱导有效的干扰素应答和抗病毒防御必不可少的特定基因的激活。使用RNA测序,我们提供了在RIG-I激活后启动的表达网络的第一个体内全基因组视图。我们观察到SLRs特异性诱导I型干扰素,干扰素刺激基因(ISGs)的子集和细胞重塑因子。相比之下,聚肌苷酸:聚胞苷酸[poly(I:C)]结合并激活多个RNA传感器,可诱导III型干扰素和几种独特的ISG。小鼠中SLR的短长度(10至14个碱基对)和强大的功能表明RIG-1形成了活性信号复合物,而没有在RNA上寡聚。这些发现表明,SLR是针对先天免疫系统进行靶向调节的有效治疗和研究工具。

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