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首页> 外文期刊>Journal of Molecular Biology >A branched stem-loop structure in the M-site of bacteriophage Q beta RNA is important for template recognition by Q beta replicase holoenzyme
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A branched stem-loop structure in the M-site of bacteriophage Q beta RNA is important for template recognition by Q beta replicase holoenzyme

机译:噬菌体Q beta RNA M位点的分支茎环结构对于Q beta复制酶全酶的模板识别很重要

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An internal site on bacteriophage Q beta RNA, the M-site (map position 2545 to 2867), was recently shown by us to be required for the efficient initiation of minus strand synthesis by Q beta replicase. In a more detailed mutational analysis, we show here that the essential elements within the M-site consist of two successive stem-loop structures followed by a bulge loop of unpaired purines, located at nucleotides 2696 to 2754 on the tip of a long, imperfectly base-paired stalk. Mutational changes affecting the sequences of paired or unpaired nucleotides in this segment reduced the template efficiency only mildly. The only severe effects were observed when one of the helical stems or the unpaired bulge was completely deleted or substantially shortened. We conclude that the three-dimensional backbone arrangement of these three elements constitutes the feature recognized by replicase. The role of the long stalk remains undetermined, because mutations that either stabilized or disrupted its base-pairing barely affected template activity, and even deletion of a major portion of one of its strands did not cause complete inactivation. Earlier evidence had implicated protein S1 (the alpha subunit of replicase) as the mediator of the M-site interaction. The lack of an active M-site on the Q beta RNA template has the same quantitative and qualitative effects on template recognition as the absence of the S1 protein from replicase in the presence of wild-type RNA. We therefore believe that the M-site interaction explains most of the role of S1 protein in the replication of Q beta RNA by replicase. (C) 1998 Academic Press. [References: 18]
机译:最近,我们证明了噬菌体QβRNA的内部位点M位点(图位2545至2867)是Qβ复制酶有效引发负链合成所必需的。在更详细的突变分析中,我们在这里显示M位点内的基本元件由两个连续的茎环结构组成,随后是未配对嘌呤的凸出环,位于不完整的长末端,核苷酸2696至2754碱基配对的茎。影响该区段中成对或不成对核苷酸序列的突变改变仅轻微降低了模板效率。当一个螺旋茎或未配对的凸起完全缺失或明显缩短时,观察到唯一的严重影响。我们得出的结论是,这三个元素的三维主干排列构成了复制酶识别的特征。长柄的作用尚未确定,因为稳定或破坏其碱基配对的突变几乎不会影响模板活性,甚至删除其一条链的主要部分也不会导致完全失活。早期证据表明蛋白S1(复制酶的α亚基)是M位点相互作用的媒介。在Q beta RNA模板上缺少活性M位点与在野生型RNA存在下从复制酶缺少S1蛋白对模板识别具有相同的定量和定性作用。因此,我们认为M位点相互作用解释了S1蛋白在通过复制酶复制QβRNA中的大部分作用。 (C)1998年学术出版社。 [参考:18]

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