首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Negative regulation of MDA5- but not RIG-I-mediated innate antiviral signaling by the dihydroxyacetone kinase
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Negative regulation of MDA5- but not RIG-I-mediated innate antiviral signaling by the dihydroxyacetone kinase

机译:二羟基丙酮激酶对MDA5-的负调控但对RIG-I介导的先天抗病毒信号没有负调控

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Viral infection leads to activation of the transcription factors interferon regulatory factor-3 and NF-κB, which collaborate to induce type Ⅰ IFNs. The RNA helicase proteins RIG-I and MDA5 were recently identified as two cytoplasmic viral RNA sensors that recognize different species of viral RNAs produced during viral replication. In this study, we identified DAK, a functionally unknown dihydroacetone kinase, as a specific MDA5-interacting protein. DAK was associated with MDA5, but not RIG-I, under physiological conditions. Overexpression of DAK inhibited MDA5-but not RIG-I- or TLR3-mediated IFN-β induction. Overexpression of DAK also inhibited cytoplasmic dsRNA and SeV-induced activation of the IFN-β promoter, whereas knockdown of endogenous DAK by RNAi activated the IFN-β promoter, and increased cytoplasmic dsRNA- or SeV-triggered activation of the IFN-β promoter. In addition, overexpression of DAK inhibited MDA5- but not RIG-I-mediated antiviral activity, whereas DAK RNAi increased cytoplasmic dsRNA-triggered antiviral activity. These findings suggest that DAK is a physiological suppressor of MDA5 and specifically inhibits MDA5- but not RIG-I-mediated innate antiviral signaling.
机译:病毒感染导致转录因子干扰素调节因子3和NF-κB的激活,它们共同诱导Ⅰ型IFN。 RNA解旋酶蛋白RIG-1和MDA5最近被鉴定为两个胞质病毒RNA传感器,可识别病毒复制过程中产生的不同种类的病毒RNA。在这项研究中,我们将DAK(一种功能未知的二氢丙酮激酶)鉴定为特定的MDA5相互作用蛋白。在生理条件下,DAK与MDA5相关,但与RIG-1不相关。 DAK的过表达抑制MDA5,但不能抑制RIG-I或TLR3介导的IFN-β诱导。 DAK的过表达也抑制了细胞质dsRNA和SeV诱导的IFN-β启动子的激活,而RNAi敲除内源DAK激活了IFN-β启动子,并增加了细胞质dsRNA或SeV触发的IFN-β启动子的激活。另外,DAK的过表达抑制MDA5-,但不抑制RIG-I介导的抗病毒活性,而DAK RNAi增加了细胞质dsRNA触发的抗病毒活性。这些发现表明DAK是MDA5的生理抑制剂,并且特异性抑制MDA5,但不抑制RIG-I介导的先天抗病毒信号传导。

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