Menichelli Elena, Isel Catherine, Oubridge Chris, Nagai Kiyoshi
MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, England.
J Mol Biol. 2007 Mar 16;367(1):187-203. doi: 10.1016/j.jmb.2006.12.056. Epub 2006 Dec 24.
The human signal recognition particle (SRP) is a large RNA-protein complex that targets secretory and membrane proteins to the endoplasmic reticulum membrane. The S domain of SRP is composed of roughly half of the 7SL RNA and four proteins (SRP19, SRP54, and the SRP68/72 heterodimer). In order to understand how the binding of proteins induces conformational changes of RNA and affects subsequent binding of other protein subunits, we have performed chemical and enzymatic probing of all S domain assembly intermediates. Ethylation interference experiments show that phosphate groups in helices 5, 6 and 7 that are essential for the binding of SRP68/72 are all on the same face of the RNA. Hydroxyl radical footprinting and dimethylsulphate (DMS) modifications show that SRP68/72 brings the lower part of helices 6 and 8 closer. SRP68/72 binding also protects the SRP54 binding site (helix 8 asymmetric loop) from chemical modification and RNase cleavage, whereas, in the presence of both SRP19 and SRP68/72, the long strand of helix 8 asymmetric loop becomes readily accessible to chemical and enzymatic probes. These results indicate that the RNA platform observed in the crystal structure of the SRP19-SRP54M-RNA complex already exists in the presence of SRP68/72 and SRP19. Therefore, SRP68/72, together with SRP19, rearranges the 7SL RNA in an SRP54 binding competent state.
人类信号识别颗粒(SRP)是一种大型RNA-蛋白质复合物,可将分泌蛋白和膜蛋白靶向至内质网膜。SRP的S结构域由约一半的7SL RNA和四种蛋白质(SRP19、SRP54以及SRP68/72异二聚体)组成。为了了解蛋白质的结合如何诱导RNA的构象变化并影响其他蛋白质亚基的后续结合,我们对所有S结构域组装中间体进行了化学和酶促探测。乙基化干扰实验表明,对于SRP68/72的结合至关重要的螺旋5、6和7中的磷酸基团都位于RNA的同一面上。羟基自由基足迹法和硫酸二甲酯(DMS)修饰表明,SRP68/72使螺旋6和8的下部更靠近。SRP68/72的结合还保护SRP54结合位点(螺旋8不对称环)免受化学修饰和核糖核酸酶切割,而在同时存在SRP19和SRP68/72的情况下,螺旋8不对称环的长链很容易被化学和酶促探针所接近。这些结果表明,在SRP19-SRP54M-RNA复合物晶体结构中观察到的RNA平台在存在SRP68/72和SRP19时就已经存在。因此,SRP68/72与SRP19一起将7SL RNA重排至SRP54结合活性状态。