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Crystal structure of a signal recognition particle Alu domain in the elongation arrest conformation

机译:伸长抑制构象中信号识别颗粒Alu结构域的晶体结构

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摘要

The signal recognition particle ( SRP) is a conserved ribonucleoprotein particle that targets membrane and secreted proteins to translocation channels in membranes. In eukaryotes, the Alu domain, which comprises the 5' and 3' extremities of the SRP RNA bound to the SRP9/14 heterodimer, is thought to interact with the ribosome to pause translation elongation during membrane docking. We present the 3.2 angstrom resolution crystal structure of a chimeric Alu domain, comprising Alu RNA from the archaeon Pyrococcus horikoshii bound to the human Alu binding proteins SRP9/ 14. The structure reveals how intricate tertiary interactions stabilize the RNA 5' domain structure and how an extra, archaeal- specific, terminal stem helps constrain the Alu RNA into the active closed conformation. In this conformation, highly conserved noncanonical base pairs allow unusually tight side- by- side packing of 5' and 3' RNA stems within the SRP9/ 14 RNA binding surface. The biological relevance of this structure is confirmed by showing that a reconstituted full- length chimeric archaeal- human SRP is competent to elicit elongation arrest in vitro. The structure will be useful in refining our understanding of how the SRP Alu domain interacts with the ribosome.
机译:信号识别颗粒(SRP)是一种保守的核糖核蛋白颗粒,可将膜和分泌的蛋白靶向膜中的易位通道。在真核生物中,Alu结构域包括与SRP9 / 14异二聚体结合的SRP RNA的5'和3'末端,被认为与核糖体相互作用,从而在膜对接过程中暂停翻译延伸。我们介绍了一个嵌合Alu域的3.2埃分辨率晶体结构,该结构包括来自古细菌Pyrococcus horikoshii的Alu RNA与人Alu结合蛋白SRP9 / 14结合。该结构揭示了复杂的三级相互作用如何稳定RNA 5'域结构以及额外的,古细菌特异性的终末茎有助于将Alu RNA限制为活性的封闭构象。在这种构象中,高度保守的非规范碱基对允许5'和3'RNA茎在SRP9 / 14 RNA结合表面内异常紧密地并排堆积。通过显示重组的全长嵌合古人类-SRP能够在体外引起伸长停滞来证实该结构的生物学相关性。该结构将有助于加深我们对SRP Alu结构域如何与核糖体相互作用的理解。

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