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Multifaceted activation of STING axis upon Nipah and measles virus-induced syncytia formation

机译:尼帕和麻疹病毒诱导的合胞体形成后 STING 轴的多方面激活

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摘要

Activation of the DNA-sensing STING axis by RNA viruses plays a role in antiviral response through mechanisms that remain poorly understood. Here, we show that the STING pathway regulates Nipah virus (NiV) replication in vivo in mice. Moreover, we demonstrate that following both NiV and measles virus (MeV) infection, IFNγ-inducible protein 16 (IFI16), an alternative DNA sensor in addition to cGAS, induces the activation of STING, leading to the phosphorylation of NF-κB p65 and the production of IFNβ and interleukin 6. Finally, we found that paramyxovirus-induced syncytia formation is responsible for loss of mitochondrial membrane potential and leakage of mitochondrial DNA in the cytoplasm, the latter of which is further detected by both cGAS and IFI16. These results contribute to improve our understanding about NiV and MeV immunopathogenesis and provide potential paths for alternative therapeutic strategies.
机译:RNA 病毒激活 DNA 感应 STING 轴通过仍知之甚少的机制在抗病毒反应中发挥作用。在这里,我们表明 STING 通路调节小鼠体内的尼帕病毒 (NiV) 复制。此外,我们证明,在 NiV 和麻疹病毒 (MeV) 感染后,除 cGAS 外的替代 DNA 传感器 IFNγ 诱导蛋白 16 (IFI16) 诱导 STING 激活,导致 NF-κB p65 磷酸化以及 IFNβ 和白细胞介素 6 的产生。最后,我们发现副粘病毒诱导的合胞体形成是导致细胞质中线粒体膜电位丧失和线粒体 DNA 泄漏的原因,后者可被 cGAS 和 IFI16 进一步检测。这些结果有助于提高我们对 NiV 和 MeV 免疫发病机制的理解,并为替代治疗策略提供潜在途径。
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