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The Interplay between Viruses and Host DNA Sensors

先天免疫系统 生物 DNA 固有免疫 免疫系统 DNA病毒 病毒学 基因组 向性 细胞生物学 病毒 基因 遗传学
作者
Sandra Huérfano,Vojtěch Šroller,Kateřina Bruštíková,Lenka Horníková,Jitka Forstová
出处
期刊:Viruses [Multidisciplinary Digital Publishing Institute]
卷期号:14 (4): 666-666 被引量:38
标识
DOI:10.3390/v14040666
摘要

DNA virus infections are often lifelong and can cause serious diseases in their hosts. Their recognition by the sensors of the innate immune system represents the front line of host defence. Understanding the molecular mechanisms of innate immunity responses is an important prerequisite for the design of effective antivirotics. This review focuses on the present state of knowledge surrounding the mechanisms of viral DNA genome sensing and the main induced pathways of innate immunity responses. The studies that have been performed to date indicate that herpesviruses, adenoviruses, and polyomaviruses are sensed by various DNA sensors. In non-immune cells, STING pathways have been shown to be activated by cGAS, IFI16, DDX41, or DNA-PK. The activation of TLR9 has mainly been described in pDCs and in other immune cells. Importantly, studies on herpesviruses have unveiled novel participants (BRCA1, H2B, or DNA-PK) in the IFI16 sensing pathway. Polyomavirus studies have revealed that, in addition to viral DNA, micronuclei are released into the cytosol due to genotoxic stress. Papillomaviruses, HBV, and HIV have been shown to evade DNA sensing by sophisticated intracellular trafficking, unique cell tropism, and viral or cellular protein actions that prevent or block DNA sensing. Further research is required to fully understand the interplay between viruses and DNA sensors.

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