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信号识别颗粒的Alu结构域在识别信号序列后会占据核糖体亚基界面上的一个特定位置。

Signal recognition particle Alu domain occupies a defined site at the ribosomal subunit interface upon signal sequence recognition.

作者信息

Terzi Lionel, Pool Martin R, Dobberstein Bernhard, Strub Katharina

机构信息

Université de Genève, Département de Biologie Cellulaire, CH-1211 Genèva 4, Switzerland.

出版信息

Biochemistry. 2004 Jan 13;43(1):107-17. doi: 10.1021/bi0353777.

Abstract

The eukaryotic signal recognition particle (SRP) is essential for cotranslational targeting of proteins to the endoplasmic reticulum (ER). The SRP Alu domain is specifically required for delaying nascent chain elongation upon signal sequence recognition by SRP and was therefore proposed to interact directly with ribosomes. Using protein cross-linking, we provide experimental evidence that the Alu binding protein SRP14 is in close physical proximity of several ribosomal proteins in functional complexes. Cross-linking occurs even in the absence of a signal sequence in the nascent chain demonstrating that SRP can bind to all translating ribosomes and that close contacts between the Alu domain and the ribosome are independent of elongation arrest activity. Without a signal sequence, SRP14 cross-links predominantly to a protein of the large subunit. Upon signal sequence recognition, certain cross-linked products become detectable or more abundant revealing a change in the Alu domain-ribosome interface. At this stage, the Alu domain of SRP is located at the ribosomal subunit interface since SRP14 can be cross-linked to proteins from the large and small ribosomal subunits. Hence, these studies reveal differential modes of SRP-ribosome interactions mediated by the Alu domain.

摘要

真核信号识别颗粒(SRP)对于蛋白质共翻译转运至内质网(ER)至关重要。SRP的Alu结构域在SRP识别信号序列后,对于延迟新生链延伸具有特殊作用,因此有人提出它可直接与核糖体相互作用。通过蛋白质交联实验,我们提供了证据表明,在功能复合物中,Alu结合蛋白SRP14与几种核糖体蛋白在物理位置上紧密相邻。即使新生链中不存在信号序列,交联依然会发生,这表明SRP能够结合到所有正在翻译的核糖体上,并且Alu结构域与核糖体之间的紧密接触与延伸阻滞活性无关。在没有信号序列的情况下,SRP14主要与大亚基的一种蛋白质发生交联。当识别到信号序列后,某些交联产物变得可检测到或更加丰富,这揭示了Alu结构域与核糖体界面的变化。在此阶段,SRP的Alu结构域位于核糖体亚基界面,因为SRP14可与大小核糖体亚基的蛋白质发生交联。因此,这些研究揭示了由Alu结构域介导的SRP与核糖体相互作用的不同模式。

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