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TRIM26 Negatively Regulates Interferon-β Production and Antiviral Response through Polyubiquitination and Degradation of Nuclear IRF3

机译:TRIM26通过多泛素化和降解核IRF3负调控干扰素-β的产生和抗病毒反应。

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摘要

Virus infection leads to the activation of transcription factor IRF3 and subsequent production of type I inteferons, which induce the transcription of various antiviral genes called interferon stimulated genes (ISGs) to eliminate viral infection. IRF3 activation requires phosphorylation, dimerization and nuclear translocation. However, the mechanisms for the termination of IRF3 activation in nucleus are elusive. Here we report the identification of TRIM26 to negatively regulate IFN-β production and antiviral response by targeting nuclear IRF3. TRIM26 bound to IRF3 and promoted its K48-linked polyubiquitination and degradation in nucleus. TRIM26 degraded WT IRF3 and the constitutive active mutant IRF3 5D, but not the phosphorylation deficient mutant IRF3 5A. Furthermore, IRF3 mutant in the Nuclear Localization Signal (NLS), which could not move into nucleus, was not degraded by TRIM26. Importantly, virus infection promoted TRIM26 nuclear translocation, which was required for IRF3 degradation. As a consequence, TRIM26 attenuated IFN-β promoter activation and IFN-β production downstream of TLR3/4, RLR and DNA sensing pathways. TRIM26 transgenic mice showed much less IRF3 activation and IFN-β production, while increased virus replication. Our findings delineate a novel mechanism for the termination of IRF3 activation in nucleus through TRIM26-mediated IRF3 ubiquitination and degradation.
机译:病毒感染导致转录因子IRF3的激活和I型干扰素的产生,从而诱导各种称为干扰素刺激基因(ISG)的抗病毒基因的转录,从而消除病毒感染。 IRF3激活需要磷酸化,二聚化和核易位。但是,终止IRF3激活在细胞核中的机制尚不清楚。在这里,我们报告了通过靶向核IRF3来鉴定TRIM26来负调控IFN-β的产生和抗病毒应答的方法。 TRIM26与IRF3结合并促进其K48连接的多泛素化和细胞核降解。 TRIM26降解了WT IRF3和组成型活性突变体IRF3 5D,但没有磷酸化缺陷突变体IRF3 5A。此外,TRIM26不能降解不能定位到核内的IRF3突变。重要的是,病毒感染促进了TRIM26核易位,这是IRF3降解所必需的。结果,TRIM26减弱了TLR3 / 4,RLR和DNA传感途径下游的IFN-β启动子激活和IFN-β产生。 TRIM26转基因小鼠显示出少得多的IRF3激活和IFN-β产生,而病毒复制增加。我们的发现描绘了一种通过TRIM26介导的IRF3泛素化和降解来终止细胞核中IRF3活化的新机制。

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