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首页> 外文期刊>RNA biology >Sgd1 is an MIF4G domain-containing cofactor of the RNA helicase Fal1 and associates with the 5' domain of the 18S rRNA sequence
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Sgd1 is an MIF4G domain-containing cofactor of the RNA helicase Fal1 and associates with the 5' domain of the 18S rRNA sequence

机译:SGD1是RNA Helicate FAL1的含MIF4G域的辅助因子,并与18S rRNA序列的5'结构域相关联

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摘要

Assembly of eukaryotic ribosomal subunits is a complex and dynamic process involving the action of more than 200 trans-acting assembly factors. Although recent cryo-electron microscopy structures have provided information on architecture of several pre-ribosomal particles and the binding sites of many AFs, the RNA and protein interactions of many other AFs not captured in these snapshots still remain elusive. RNA helicases are key regulators of structural rearrangements within pre-ribosomal complexes and here we have analysed the eIF4A-like RNA helicase Fal1 and its putative cofactor Sgd1. Our data show that these proteins interact directly via the MIF4G domain of Sgd1 and that the MIF4G domain of Sgd1 stimulates the catalytic activity of Fal1 in vitro. The catalytic activity of Fal1, and the interaction between Fal1 and Sgd1, are required for efficient pre-rRNA processing at the A(0), A(1) and A(2) sites. Furthermore, Sgd1 co-purifies the early small subunit biogenesis factors Lcp5 and Rok1, suggesting that the Fal1-Sgd1 complex likely functions within the SSU processome. In vivo crosslinking data reveal that Sgd1 binds to helix H12 of the 18S rRNA sequence and we further demonstrate that this interaction is formed by the C-terminal region of the protein, which is essential for its function in ribosome biogenesis.
机译:真核核糖体亚基的组装是一种复杂和动态的过程,涉及200多个反向作用组件因素的作用。尽管最近的冷冻电子显微镜结构提供了有关多种核糖体颗粒的架构和许多AFS的结合位点的信息,但许多其他在这些快照中未捕获的许多其他AF的RNA和蛋白质相互作用仍然难以捉摸。 RNA螺旋酶是核糖体复合物中的结构重排的关键调节剂,并且在这里我们已经分析了EIF4A样RNA直升机FAL1及其推定的辅助因子SGD1。我们的数据显示,这些蛋白质通过SGD1的MIF4G结构域直接相互作用,并且SGD1的MIF4G结构域在体外刺激FAL1的催化活性。 FAL1的催化活性和FAL1和SGD1之间的相互作用是在A(0),A(1)和A(2)位点处的有效预rRNA处理。此外,SGD1共同净化了早期的小亚基生物生成因子LCP5和ROK1,表明FAL1-SGD1复杂可能在SSU过程中的功能。体内交联数据显示,SGD1与18S rRNA序列的螺旋H12结合,我们进一步证明该相互作用由蛋白质的C末端区域形成,这对于其在核糖体生物中的功能至关重要。

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