Juneau K, Cech T R
Department of Chemistry and Biochemistry, Howard Hughes Medical Institute, University of Colorado, Boulder 80309, USA.
RNA. 1999 Aug;5(8):1119-29. doi: 10.1017/s135583829999074x.
An in vitro selection system was devised to select RNAs based on their tertiary structural stability, independent of RNA activity. Selection studies were conducted on the P4-P6 domain from the Tetrahymena thermophila group I intron, an autonomous self-folding unit that contains several important tertiary folding motifs including the tetraloop receptor and the A-rich bulge. Partially randomized P4-P6 molecules were selected based on their ability to fold into compact structures using native gel electrophoresis in the presence of decreasing concentrations of MgCl2. After 10 rounds of the selection process, a number of sequence alterations were identified that stabilized the P4-P6 RNA. One of these, a single base deletion of C209 within the P4 helix, significantly stabilized the P4-P6 molecule and would not have been identified by an activity-based selection because of its essential role for ribozyme function. Additionally, the sequence analysis provided evidence that stabilization of secondary structure may contribute to overall tertiary stability for RNAs. This system for probing RNA structure irrespective of RNA activity allows analysis of RNA structure/function relationships by identifying nucleotides or motifs important for folding and then comparing them with RNA sequences required for function.
设计了一种体外筛选系统,用于基于RNA的三级结构稳定性来筛选RNA,而与RNA活性无关。对嗜热栖热菌I组内含子的P4-P6结构域进行了筛选研究,该结构域是一个自主的自我折叠单元,包含几个重要的三级折叠基序,包括四环受体和富含A的凸起。基于在MgCl2浓度降低的情况下使用天然凝胶电泳折叠成紧密结构的能力,选择了部分随机化的P4-P6分子。经过10轮筛选过程,鉴定出了一些稳定P4-P6 RNA的序列改变。其中之一是P4螺旋内C209的单碱基缺失,它显著稳定了P4-P6分子,并且由于其对核酶功能的重要作用,基于活性的筛选不会鉴定到它。此外,序列分析提供了证据,表明二级结构的稳定可能有助于RNA的整体三级稳定性。这种不考虑RNA活性来探测RNA结构的系统,通过识别对折叠重要的核苷酸或基序,然后将它们与功能所需的RNA序列进行比较,从而允许分析RNA结构/功能关系。