Weichenrieder O, Wild K, Strub K, Cusack S
European Molecular Laboratory Biology, Grenoble Outstation, France.
Nature. 2000 Nov 9;408(6809):167-73. doi: 10.1038/35041507.
The Alu domain of the mammalian signal recognition particle (SRP) comprises the heterodimer of proteins SRP9 and SRP14 bound to the 5' and 3' terminal sequences of SRP RNA. It retards the ribosomal elongation of signal-peptide-containing proteins before their engagement with the translocation machinery in the endoplasmic reticulum. Here we report two crystal structures of the heterodimer SRP9/14 bound either to the 5' domain or to a construct containing both 5' and 3' domains. We present a model of the complete Alu domain that is consistent with extensive biochemical data. SRP9/14 binds strongly to the conserved core of the 5' domain, which forms a U-turn connecting two helical stacks. Reversible docking of the more weakly bound 3' domain might be functionally important in the mechanism of translational regulation. The Alu domain structure is probably conserved in other cytoplasmic ribonucleoprotein particles and retroposition intermediates containing SRP9/14-bound RNAs transcribed from Alu repeats or related elements in genomic DNA.
哺乳动物信号识别颗粒(SRP)的Alu结构域由与SRP RNA的5'和3'末端序列结合的蛋白质SRP9和SRP14异二聚体组成。在含信号肽的蛋白质与内质网中的转运机制结合之前,它会延缓其核糖体延伸。本文报道了SRP9/14异二聚体与5'结构域或同时包含5'和3'结构域的构建体结合的两种晶体结构。我们提出了一个与大量生化数据一致的完整Alu结构域模型。SRP9/14与5'结构域的保守核心紧密结合,该核心形成一个连接两个螺旋堆叠的U形转弯。结合较弱的3'结构域的可逆对接可能在翻译调控机制中具有重要功能。Alu结构域结构可能在其他细胞质核糖核蛋白颗粒以及含有从基因组DNA中的Alu重复序列或相关元件转录而来的与SRP9/14结合的RNA的逆转座中间体中保守。