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信号识别颗粒及30S核糖体亚基中4.5S RNA的构象

Conformation of 4.5S RNA in the signal recognition particle and on the 30S ribosomal subunit.

作者信息

Gu Shan-Qing, Jöckel Johannes, Beinker Philipp, Warnecke Jens, Semenkov Yuri P, Rodnina Marina V, Wintermeyer Wolfgang

机构信息

Institute of Molecular Biology, University of Witten/Herdecke, Stockumer Str. 10, 58448 Witten, Germany.

出版信息

RNA. 2005 Sep;11(9):1374-84. doi: 10.1261/rna.7219805. Epub 2005 Jul 25.

Abstract

The signal recognition particle (SRP) from Escherichia coli consists of 4.5S RNA and protein Ffh. It is essential for targeting ribosomes that are translating integral membrane proteins to the translocation pore in the plasma membrane. Independently of Ffh, 4.5S RNA also interacts with elongation factor G (EF-G) and the 30S ribosomal subunit. Here we use a cross-linking approach to probe the conformation of 4.5S RNA in SRP and in the complex with the 30S ribosomal subunit and to map the binding site. The UV-activatable cross-linker p-azidophenacyl bromide (AzP) was attached to positions 1, 21, and 54 of wild-type or modified 4.5S RNA. In SRP, cross-links to Ffh were formed from AzP in all three positions in 4.5S RNA, indicating a strongly bent conformation in which the 5' end (position 1) and the tetraloop region (including position 54) of the molecule are close to one another and to Ffh. In ribosomal complexes of 4.5S RNA, AzP in both positions 1 and 54 formed cross-links to the 30S ribosomal subunit, independently of the presence of Ffh. The major cross-linking target on the ribosome was protein S7; minor cross-links were formed to S2, S18, and S21. There were no cross-links from 4.5S RNA to the 50S subunit, where the primary binding site of SRP is located close to the peptide exit. The functional role of 4.5S RNA binding to the 30S subunit is unclear, as the RNA had no effect on translation or tRNA translocation on the ribosome.

摘要

来自大肠杆菌的信号识别颗粒(SRP)由4.5S RNA和Ffh蛋白组成。它对于将正在翻译整合膜蛋白的核糖体靶向到质膜中的转运孔至关重要。独立于Ffh,4.5S RNA还与延伸因子G(EF-G)和30S核糖体亚基相互作用。在这里,我们使用交联方法来探测SRP中以及与30S核糖体亚基形成的复合物中4.5S RNA的构象,并绘制结合位点。将可紫外线激活的交联剂对叠氮苯甲酰溴(AzP)连接到野生型或修饰的4.5S RNA的第1、21和54位。在SRP中,4.5S RNA中所有三个位置的AzP都与Ffh形成了交联,表明其构象强烈弯曲,其中分子的5'端(第1位)和四环区域(包括第54位)彼此靠近并靠近Ffh。在4.5S RNA的核糖体复合物中,第1和54位的AzP均与30S核糖体亚基形成交联,与Ffh的存在无关。核糖体上主要的交联靶点是蛋白质S7;与S2、S18和S21形成了少量交联。4.5S RNA与50S亚基没有交联,SRP的主要结合位点位于50S亚基靠近肽出口的位置。4.5S RNA与30S亚基结合的功能作用尚不清楚,因为该RNA对核糖体上的翻译或tRNA易位没有影响。

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