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Binding of bacterial secondary messenger molecule c di-GMP is a STING operation

机译:细菌次级信使分子c di-GMP的结合是STING操作

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Initial skirmishes between the host and pathogen result in spillage of the contents of the bacterial cell. Amongst the spillage, the secondary messenger molecule, cyclic dimeric guanosine monophosphate (c di-GMP), was recently shown to be bound by stimulator of interferon genes (STING). Binding of c di-GMP by STING activates the Tank Binding Kinase (TBK1) mediated signaling cascades that galvanize the body’s defenses for elimination of the pathogen. In addition to c di-GMP, STING has also been shown to function in innate immune responses against pathogen associated molecular patterns ( PAMPs ) originating from the DNA or RNA of pathogens. The pivotal role of STING in host defense is exemplified by the fact that STING?/? mice die upon infection by HSV-1 . Thus, STING plays an essential role in innate immune responses against pathogens. This opens up an exciting possibility of targeting STING for development of adjuvant therapies to boost the immune defenses against invading microbes. Similarly, STING could be targeted for mitigating the inflammatory responses augmented by the innate immune system. This review summarizes and updates our current understanding of the role of STING in innate immune responses and discusses the future challenges in delineating the mechanism of STING-mediated responses.
机译:宿主与病原体之间的最初小规模冲突导致细菌细胞内容物溢出。在泄漏物中,最近发现次级信使分子环状二聚鸟苷单磷酸鸟苷(c di-GMP)被干扰素基因的刺激物(STING)束缚。通过STING结合c di-GMP激活了Tank结合激酶(TBK1)介导的信号级联反应,激发了机体消除病原体的防御能力。除了c di-GMP以外,STING还显示出其对源自病原体DNA或RNA的病原体相关分子模式(PAMPs)的固有免疫反应的功能。 STING在宿主防御中的关键作用可以通过以下事实来例证,即STING ?/?小鼠在被HSV-1感染后死亡。因此,STING在针对病原体的先天免疫应答中起着至关重要的作用。这为靶向STING开发辅助疗法以增强针对入侵微生物的免疫防御能力提供了令人兴奋的可能性。同样,STING可以靶向缓解先天免疫系统增强的炎症反应。这篇综述总结并更新了我们目前对STING在先天性免疫反应中的作用的理解,并讨论了在描述STING介导的反应机制方面的未来挑战。

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