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Qβ RNA中一种远距离相互作用对于复制是必需的,这种相互作用连接了M位点与3'端之间的一千个核苷酸。

A long-range interaction in Qbeta RNA that bridges the thousand nucleotides between the M-site and the 3' end is required for replication.

作者信息

Klovins J, Berzins V, van Duin J

机构信息

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, The Netherlands.

出版信息

RNA. 1998 Aug;4(8):948-57. doi: 10.1017/s1355838298980177.

Abstract

The genome of the positive strand RNA bacteriophage Qbeta folds into a number of structural domains, defined by long-distance interactions. The RNA within each domain is ordered in arrays of three- and four-way junctions that confer rigidity to the chain. One such domain, RD2, is about 1,000-nt long and covers most of the replicase gene. Its downstream border is the 3' untranslated region, whereas upstream the major binding site for Qbeta replicase, the M-site, is located. Replication of Qbeta RNA has always been puzzling because the binding site for the enzyme lies some 1,500-nt away from the 3' terminus. We present evidence that the long-range interaction defining RD2 exists and positions the 3' terminus in the vicinity of the replicase binding site. The model is based on several observations. First, mutations destabilizing the long-range interaction are virtually lethal to the phage, whereas base pair substitutions have little effect. Secondly, in vitro analysis shows that destabilizing the long-range pairing abolishes replication of the plus strand. Thirdly, passaging of nearly inactive mutant phages results in the selection of second-site suppressor mutations that restore both long-range base pairing and replication. The data are interpreted to mean that the 3D organization of this part of Qbeta RNA is essential to its replication. We propose that, when replicase is bound to the internal recognition site, the 3' terminus of the template is juxtaposed to the enzyme's active site.

摘要

正链RNA噬菌体Qβ的基因组折叠成多个结构域,这些结构域由长距离相互作用定义。每个结构域内的RNA以三向和四向连接的阵列形式排列,赋予链刚性。其中一个这样的结构域RD2约1000个核苷酸长,覆盖了大部分复制酶基因。它的下游边界是3'非翻译区,而上游是Qβ复制酶的主要结合位点M位点所在之处。Qβ RNA的复制一直令人困惑,因为该酶的结合位点距离3'末端约1500个核苷酸。我们提供证据表明,定义RD2的长距离相互作用存在,并将3'末端定位在复制酶结合位点附近。该模型基于多项观察结果。首先,破坏长距离相互作用的突变对噬菌体几乎是致命的,而碱基对替换影响很小。其次,体外分析表明,破坏长距离配对会消除正链的复制。第三,几乎无活性的突变噬菌体传代导致选择第二位点抑制突变,恢复长距离碱基配对和复制。这些数据被解释为意味着Qβ RNA这部分的三维组织对其复制至关重要。我们提出,当复制酶与内部识别位点结合时,模板的3'末端与酶的活性位点并列。

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