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New insights into the structural basis of DNA recognition by HINa and HINb domains of IFI16.

机译:对IFI16的HINa和HINb结构域识别DNA的结构基础的新见解。

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摘要

Interferon gamma-inducible protein 16 (IFI16) senses DNA in the cytoplasm and the nucleus by using two tandem hematopoietic interferon-inducible nuclear (HIN) domains, HINa and HINb, through the cooperative assembly of IFI16 filaments on double-stranded DNA (dsDNA). The role of HINa in sensing DNA is not clearly understood. Here, we describe the crystal structure of the HINa domain in complex with DNA at 2.55 ? resolution and provide the first insight into the mode of DNA binding by the HINa domain. The structure reveals the presence of two oligosaccharideucleotide-binding (OB) folds with a unique DNA-binding surface. HINa uses loop L45 of the canonical OB2 fold to bind to the DNA backbone. The dsDNA is recognized as two single strands of DNA. Interestingly, deletion of HINb compromises the ability of IFI16 to induce IFN-β, while HINa mutants impaired in DNA binding enhance the production of IFN-β. These results shed light on the roles of IFI16 HIN domains in DNA recognition and innate immune responses.
机译:干扰素γ诱导蛋白16(IFI16)通过使用两个串联的造血干扰素诱导性核(HIN)域HINa和HINb,通过双链DNA(dsDNA)上IFI16细丝的协同组装,来检测细胞质和细胞核中的DNA 。 HINa在检测DNA中的作用尚不清楚。在这里,我们描述了与2.55?分辨率,并首次了解HINa域与DNA结合的模式。该结构揭示了两个具有独特的DNA结合表面的寡糖/核苷酸结合(OB)折叠的存在。 HINa使用标准OB2折叠的L45环与DNA骨架结合。 dsDNA被识别为DNA的两条单链。有趣的是,HINb的缺失会损害IFI16诱导IFN-β的能力,而DNA结合受损的HINa突变体则会增加IFN-β的产生。这些结果揭示了IFI16 HIN域在DNA识别和先天免疫应答中的作用。

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