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首页> 外文期刊>Nucleic Acids Research >Structural basis for the regulatory function of a complex zinc-binding domain in a replicative arterivirus helicase resembling a nonsense-mediated mRNA decay helicase
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Structural basis for the regulatory function of a complex zinc-binding domain in a replicative arterivirus helicase resembling a nonsense-mediated mRNA decay helicase

机译:类似于无意义介导的mRNA衰变解旋酶的复制性动脉病毒解旋酶中复杂的锌结合结构域的调控功能的结构基础

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摘要

All positive-stranded RNA viruses with genomes >similar to 7 kb encode helicases, which generally are poorly characterized. The core of the nidovirus superfamily 1 helicase (HEL1) is associated with a unique N-terminal zinc-binding domain (ZBD) that was previously implicated in helicase regulation, genome replication and subgenomic mRNA synthesis. The high-resolution structure of the arterivirus helicase (nsp10), alone and in complex with a polynucleotide substrate, now provides first insights into the structural basis for nidovirus helicase function. A previously uncharacterized domain 1B connects HEL1 domains 1A and 2A to a long linker of ZBD, which further consists of a novel RING-like module and treble-clef zinc finger, together coordinating three Zn atoms. On substrate binding, major conformational changes were evident outside the HEL1 domains, notably in domain 1B. Structural characterization, mutagenesis and biochemistry revealed that helicase activity depends on the extensive relay of interactions between the ZBD and HEL1 domains. The arterivirus helicase structurally resembles the cellular Upf1 helicase, suggesting that nidoviruses may also use their helicases for post-transcriptional quality control of their large RNA genomes.
机译:基因组> 7 kb的所有正链RNA病毒均编码解旋酶,通常表征较差。 Nidovirus超家族1解旋酶(HEL1)的核心与之前参与解旋酶调节,基因组复制和亚基因组mRNA合成的独特N末端锌结合域(ZBD)相关。单独和与多核苷酸底物复合的大动脉病毒解旋酶(nsp10)的高分辨率结构现在提供了对Nidovirus解旋酶功能的结构基础的初步认识。先前未描述的结构域1B将HEL1结构域1A和2A连接到ZBD的长连接子,该连接子进一步由新型RING样模块和三叉锌指组成,它们共同配位三个Zn原子。在底物结合上,主要的构象变化在HEL1结构域之外很明显,特别是在结构域1B中。结构表征,诱变和生物化学表明解旋酶活性取决于ZBD和HEL1域之间相互作用的广泛中继。大动脉病毒解旋酶在结构上与细胞Upf1解旋酶相似,这表明,尼多病毒也可将其解旋酶用于大RNA基因组的转录后质量控制。

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