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酿酒酵母前体核糖体RNA 5'外部转录间隔区的结构分析

Structure analysis of the 5' external transcribed spacer of the precursor ribosomal RNA from Saccharomyces cerevisiae.

作者信息

Yeh L C, Lee J C

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284-7760.

出版信息

J Mol Biol. 1992 Dec 5;228(3):827-39. doi: 10.1016/0022-2836(92)90867-j.

Abstract

Full-length precursor ribosomal RNA molecules were produced in vitro using as a template, a plasmid containing the yeast 35 S pre-rRNA gene under the control of the phage T3 promoter. The higher-order structure of the 5'-external transcribed spacer (5' ETS) sequence in the 35S pre-rRNA molecule was studied using dimethylsulfate, 1-cyclohexyl-3-(2-morpholinoethyl)-carbodiimide metho-p-toluenesulfonate, RNase T1 and RNase V1 as structure-sensitive probes. Modified residues were detected by primer extension. Data produced were used to evaluate several theoretical structure models predicted by minimum free-energy calculations. A model for the entire 5'ETS region is proposed that accommodates 82% of the residues experimentally shown to be in either base-paired or single-stranded structure in the correct configuration. The model contains a high degree of secondary structure with ten stable hairpins of varying lengths and stabilities. The hairpins are composed of the Watson-Crick A.T and G.C pairs plus the non-canonical G.U pairs. Based on a comparative analysis of the 5' ETS sequence from Saccharomyces cerevisiae and Schizosaccharomyces pombe, most of the base-paired regions in the proposed model appear to be phylogenetically supported. The two sites previously shown to be crosslinked to U3 snRNA as well as the previously proposed recognition site for processing and one of the early processing site (based on sequence homology to the vertebrate ETS cleavage site) are located in single-stranded regions in the model. The present folding model for the 5' ETS in the 35 S pre-rRNA molecule should be useful in the investigations of the structure, function and processing of pre-rRNA.

摘要

使用含有在噬菌体T3启动子控制下的酵母35S前体rRNA基因的质粒作为模板,在体外产生全长前体核糖体RNA分子。使用硫酸二甲酯、1-环己基-3-(2-吗啉代乙基)-碳二亚胺对甲苯磺酸盐、核糖核酸酶T1和核糖核酸酶V1作为结构敏感探针,研究了35S前体rRNA分子中5'-外部转录间隔区(5'ETS)序列的高级结构。通过引物延伸检测修饰的残基。所产生的数据用于评估通过最小自由能计算预测的几种理论结构模型。提出了一个针对整个5'ETS区域的模型,该模型容纳了82%经实验证明处于正确构型的碱基配对或单链结构中的残基。该模型包含高度的二级结构,有十个长度和稳定性各异的稳定发夹结构。这些发夹结构由沃森-克里克A.T和G.C碱基对以及非规范的G.U碱基对组成。基于对酿酒酵母和粟酒裂殖酵母5'ETS序列的比较分析,所提出模型中的大多数碱基配对区域似乎在系统发育上得到了支持。先前显示与U3小核仁RNA交联的两个位点以及先前提出的加工识别位点和一个早期加工位点(基于与脊椎动物ETS切割位点的序列同源性)位于该模型的单链区域中。35S前体rRNA分子中5'ETS的当前折叠模型应有助于前体rRNA的结构、功能和加工研究。

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