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Structural basis for duplex RNA recognition and cleavage by Archaeoglobus fulgidus C3PO

机译:古菌古菌C3PO识别和切割双链RNA的结构基础

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摘要

Oligomeric complexes of Trax and Translin proteins, known as C3POs, participate in several eukaryotic nucleic acid metabolism pathways, including RNA interference and tRNA processing. In RNA interference in humans and Drosophila, C3PO activates the RNA-induced silencing complex (RISC) by removing the passenger strand of the small interfering RNA precursor duplex, using nuclease activity present in Trax. How C3POs engage with nucleic acid substrates is unknown. Here we identify a single protein from Archaeoglobus fulgidus that assembles into an octamer highly similar to human C3PO. The structure in complex with duplex RNA reveals that the octamer entirely encapsulates a single 13-base-pair RNA duplex inside a large inner cavity. Trax-like-subunit catalytic sites target opposite strands of the duplex for cleavage separated by 7 base pairs. The structure provides insight into the mechanism of RNA recognition and cleavage by an archaeal C3PO-like complex.
机译:Trax和Translin蛋白的寡聚复合物(称为C3PO)参与几种真核核酸代谢途径,包括RNA干扰和tRNA加工。在人类和果蝇的RNA干扰中,C3PO通过使用Trax中存在的核酸酶活性去除小分子干扰RNA前体双链的过客链,从而激活RNA诱导的沉默复合物(RISC)。 C3POs如何与核酸底物结合尚不清楚。在这里,我们从古菌中鉴定出一种蛋白质,该蛋白质组装成与人C3PO高度相似的八聚体。与双链体RNA复合的结构表明,该八聚体将一个13碱基对的RNA双链体完全包裹在一个大的内腔中。 Trax样亚基催化位点靶向双链体的相反链,以被7个碱基对隔开。该结构提供了对古细菌C3PO样复合物RNA识别和切割机制的了解。

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