Rymond B C, Torrey D D, Rosbash M
Department of Biology, Brandeis University, Waltham, Massachusetts 02254.
Genes Dev. 1987 May;1(3):238-46. doi: 10.1101/gad.1.3.238.
To investigate the importance of sequences between the yeast (Saccharomyces cerevisiae) branch point (TACTAAC box) and 3' splice site (AG), we generated a series of pre-mRNA substrates that differed in the length of RNA retained on the 3' side of the TACTAAC box. These pre-mRNAs were compared as substrates for the first step of in vitro splicing (5' cleavage and lariat formation) and in vitro spliceosome assembly (complex formation) in a whole-cell yeast extract. The results indicate that for rp51A pre-mRNA at least 29 nucleotides of RNA on the 3' side of the TACTAAC box are required for 5' cleavage and lariat formation, as smaller substrates fail to manifest any detectable cleavage or ligation events. Analysis of splicing complex assembly indicates that these smaller substrates undergo efficient yet incomplete complex formation; they are blocked at a late stage of spliceosome assembly, the complex I to complex II transition (Pikielny et al. 1986), a result which suggests that the failure to form lariats is due to a specific assembly defect. The lariat formation block (and assembly defect) can be relieved by the addition of ribohomopolymer "tails" to the 3' end of the shortened rp51A pre-mRNAs, and similar results were obtained with shortened actin pre-mRNAs. The results of this study indicate that this region of the pre-mRNA serves a specific function late in in vitro spliceosome assembly.
为了研究酵母(酿酒酵母)分支点(TACTAAC盒)与3'剪接位点(AG)之间序列的重要性,我们构建了一系列前体mRNA底物,这些底物在TACTAAC盒3'侧保留的RNA长度上有所不同。在全细胞酵母提取物中,将这些前体mRNA作为体外剪接第一步(5'切割和套索形成)和体外剪接体组装(复合物形成)的底物进行比较。结果表明,对于rp51A前体mRNA,TACTAAC盒3'侧至少29个核苷酸的RNA是5'切割和套索形成所必需的,因为较小的底物未能表现出任何可检测到的切割或连接事件。剪接复合物组装分析表明,这些较小的底物经历了高效但不完全的复合物形成;它们在剪接体组装的后期阶段被阻断,即复合物I到复合物II的转变(Pikielny等人,1986),这一结果表明未能形成套索是由于特定的组装缺陷。通过向缩短的rp51A前体mRNA的3'末端添加核糖同聚物“尾巴”,可以缓解套索形成阻断(和组装缺陷),并且对缩短的肌动蛋白前体mRNA也获得了类似的结果。这项研究的结果表明,前体mRNA的这一区域在体外剪接体组装后期发挥特定功能。