Artigo Acesso aberto Revisado por pares

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

2012; Springer Nature; Volume: 22; Issue: 9 Linguagem: Inglês

10.1038/cr.2012.111

ISSN

1748-7838

Autores

Zhenlin Yang, Huanhuan Liang, Qian Zhou, Ying Li, Haiwei Chen, Wen Ye, Danying Chen, Joy Fleming, Hong‐Bing Shu, Yingfang Liu,

Tópico(s)

RNA regulation and disease

Resumo

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.

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