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首页> 外文期刊>Immunity >A Conserved Histidine in the RNA Sensor RIG-I Controls Immune Tolerance to N-1-2 ' O-Methylated Self RNA
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A Conserved Histidine in the RNA Sensor RIG-I Controls Immune Tolerance to N-1-2 ' O-Methylated Self RNA

机译:RNA传感器RIG-I中的保守组氨酸可控制N-1-2'O-甲基化自身RNA的免疫耐受

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摘要

The cytosolic helicase retinoic acid-inducible gene-I (RIG-I) initiates immune responses to most RNA viruses by detecting viral 5'-triphosphorylated RNA (pppRNA). Although endogenous mRNA is also 5'-triphosphorylated, backbone modifications and the 5'-ppp-linked methylguanosine ((m7) G) cap prevent immunorecognition. Here we show that the methylation status of endogenous capped mRNA at the 5'-terminal nucleotide (N-1) was crucial to prevent RIG-I activation. Moreover, we identified a single conserved amino acid (H830) in the RIG-I RNA binding pocket as the mediator of steric exclusion of N-1-2'O-methylated RNA. H830A alteration (RIG-I(H830A)) restored binding of N-1-2'O-methylated pppRNA. Consequently, endogenous mRNA activated the RIG-I(H830A) mutant but not wild-type RIG-I. Similarly, knockdown of the endogenous N-1-2'O-methyltransferase led to considerable RIG-I stimulation in the absence of exogenous stimuli. Studies involving yellow-fever-virus-encoded 2'O-methyltransferase and RIG-I(H830A) revealed that viruses exploit this mechanism to escape RIG-I. Our data reveal a new role for cap N-1-2'O-methylation in RIG-I tolerance of self-RNA.
机译:胞质解旋酶视黄酸诱导基因I(RIG-I)通过检测病毒5'-三磷酸化RNA(pppRNA)引发对大多数RNA病毒的免疫应答。尽管内源性mRNA也是5'-三磷酸化的,但骨架修饰和5'-ppp连接的甲基鸟苷((m7)G)帽会阻止免疫识别。在这里,我们显示内源加帽的mRNA在5'-末端核苷酸(N-1)处的甲基化状态对于防止RIG-I激活至关重要。此外,我们在RIG-I RNA结合口袋中鉴定出一个保守的氨基酸(H830)作为N-1-2'O-甲基化RNA的空间排阻介质。 H830A改变(RIG-1(H830A))恢复了N-1-2'O-甲基化pppRNA的结合。因此,内源性mRNA激活了RIG-I(H830A)突变体,但没有激活野生型RIG-I。同样,内源性N-1-2'O-甲基转移酶的敲低导致在没有外源性刺激的情况下产生大量的RIG-I刺激。涉及黄热病病毒编码的2'O-甲基转移酶和RIG-I(H830A)的研究表明,病毒利用这种机制逃避了RIG-I。我们的数据揭示了帽N-1-2'O-甲基化在自身RNA的RIG-I耐受中的新作用。

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