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Crystal structure of ISG54 reveals a novel RNA binding structure and potential functional mechanisms

机译:ISG54的晶体结构揭示了一种新颖的RNA结合结构和潜在的功能机制

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摘要

Interferon-stimulated gene 56 (ISG56) family members play important roles in blocking viral replication and regulating cellular functions, however, their underlying molecular mechanisms are largely unclear. Here, we present the crystal structure of ISG54, an ISG56 family protein with a novel RNA-binding structure. The structure shows that ISG54 monomers have 9 tetratricopeptide repeat-like motifs and associate to form domain-swapped dimers. The C-terminal part folds into a super-helical structure and has an extensively positively-charged nucleotide-binding channel on its inner surface. EMSA results show that ISG54 binds specifically to some RNAs, such as adenylate uridylate (AU)-rich RNAs, with or without 5′ triphosphorylation. Mutagenesis and functional studies show that this RNA-binding ability is important to its antiviral activity. Our results suggest a new mechanism underlying the antiviral activity of this interferon-inducible gene 56 family member.
机译:干扰素刺激的基因56(ISG56)家族成员在阻断病毒复制和调节细胞功能中起重要作用,但是,其潜在的分子机制尚不清楚。在这里,我们介绍了ISG54的晶体结构,ISG56家族蛋白具有新颖的RNA结合结构。结构表明,ISG54单体具有9个四三肽重复样基序,并缔合形成域交换的二聚体。 C末端部分折叠成超螺旋结构,并在其内表面具有广泛带正电的核苷酸结合通道。 EMSA结果表明,ISG54可与5'三磷酸化或不含5'三磷酸化的某些RNA(例如富含腺苷酸尿苷酸(AU)的RNA)特异性结合。诱变和功能研究表明,这种RNA结合能力对其抗病毒活性很重要。我们的研究结果表明这种干扰素诱导基因56家族成员的抗病毒活性的新机制。

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