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噬菌体Qβ复制酶对噬菌体Qβ正链RNA作为模板的识别:核糖体蛋白S1和宿主因子介导的RNA相互作用的作用

Recognition of bacteriophage Qbeta plus strand RNA as a template by Qbeta replicase: role of RNA interactions mediated by ribosomal proteins S1 and host factor.

作者信息

Miranda G, Schuppli D, Barrera I, Hausherr C, Sogo J M, Weber H

机构信息

Institut für Molekularbiologie, Abt. I, Universität Zurich, Switzerland.

出版信息

J Mol Biol. 1997 Apr 18;267(5):1089-103. doi: 10.1006/jmbi.1997.0939.

Abstract

RNA-protein interactions between bacteriophage Qbeta plus strand RNA and the components of the Qbeta replicase system were studied by deletion analysis. Internal, 5'-terminal and 3'-terminal deletions were assayed for template activity with replicase in vitro. Of the two internal binding sites previously described for replicase, we found that the S-site (map position 1247 to 1346) could be deleted without any significant effect on template activity, whereas deletion of the M-site (map position 2545 to 2867) resulted in a strong inactivation and a high salt sensitivity of the residual activity. Binding complexes of the deletion mutant RNAs with the different proteins involved in Qbeta RNA replication were analysed by electron microscopy. The formation of looped complex structures, previously reported and explained as simultaneous interactions with replicase at the S and the M-site, was abolished by deleting the S-site but, surprisingly, not by deleting the M-site. The same types of complexes observed with replicase were also formed with purified protein S1 (the alpha subunit of replicase), suggesting that these internal interactions with Qbeta RNA are mediated by the S1 protein. The Qbeta host factor, a protein required for the template activity of the Qbeta plus strand, was reported earlier to form similar complexes by binding to the S and M-sites (or adjacent sites) and in addition to the 3'-end, resulting in double-looped structures. The patterns of looped complexes observed with the deletion mutant RNAs suggest that the binding of host factor might not involve the S and M-sites themselves but adjacent downstream sites. An additional internal host factor interaction near map position 2300 was detected with several mutant RNAs. Qbeta RNA molecules with 3'-truncations formed 3'-terminal loops with similar efficiency as wild-type RNA, indicating that recognition of the 3'-end by host factor is not dependent on a specific 3'-terminal base sequence.

摘要

通过缺失分析研究了噬菌体Qβ正链RNA与Qβ复制酶系统各组分之间的RNA-蛋白质相互作用。对内部、5'-末端和3'-末端缺失进行了体外复制酶模板活性检测。在先前描述的复制酶的两个内部结合位点中,我们发现S位点(图谱位置1247至1346)可以被删除而对模板活性没有任何显著影响,而M位点(图谱位置2545至2867)的删除导致强烈失活且残余活性对高盐敏感。通过电子显微镜分析了缺失突变RNA与参与Qβ RNA复制的不同蛋白质的结合复合物。先前报道并解释为在S和M位点与复制酶同时相互作用而形成的环状复合物结构,通过删除S位点而被消除,但令人惊讶的是,删除M位点并未消除。用纯化的蛋白质S1(复制酶的α亚基)也形成了与复制酶观察到的相同类型的复合物,这表明与Qβ RNA的这些内部相互作用是由S1蛋白介导的。Qβ宿主因子是Qβ正链模板活性所需的一种蛋白质,先前报道它通过与S和M位点(或相邻位点)以及3'-末端结合形成类似的复合物,从而产生双环结构。用缺失突变RNA观察到的环状复合物模式表明,宿主因子的结合可能不涉及S和M位点本身,而是相邻的下游位点。用几种突变RNA检测到在图谱位置2300附近有额外的内部宿主因子相互作用。3'-末端截短的Qβ RNA分子形成3'-末端环的效率与野生型RNA相似,这表明宿主因子对3'-末端的识别不依赖于特定的3'-末端碱基序列。

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