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Intron mutations affect splicing of Saccharomyces cerevisiae SUP53 precursor tRNA.

机译:内含子突变影响啤酒酵母SUP53前体tRNA的剪接。

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摘要

The Saccharomyces cerevisiae amber suppressor tRNA gene SUP53 (a tRNALeu3 allele) was used to investigate the role of intron structure and sequence on precursor tRNA splicing in vivo and in vitro. This gene encodes a pre-tRNA which contains a 32-base intervening sequence. Two types of SUP53 intron mutants were constructed: ones with an internal deletion of the natural SUP53 intron and ones with a novel intron. These mutant genes were transcribed in vitro, and the end-processed transcripts were analyzed for their ability to serve as substrates for the partially purified S. cerevisiae tRNA endonuclease and ligase. The in vitro phenotype of these mutant RNAs was correlated with the in vivo suppressor tRNA function of these SUP53 alleles after integration of the genes into the yeast genome. Analysis of these mutant pre-tRNAs, which exhibited no perturbation of the mature domain, clearly showed that intron structure and sequence can have profound effects on pre-tRNA splicing. All of the mutant RNAs, which were inefficiently spliced or unspliced, evidenced cleavage only at the 5' splice junction. Base changes in the intron proximal to the 3' splice junction could partially rescue the splicing defect. The implications of these data for tRNA endonuclease-substrate interactions are discussed.
机译:酿酒酵母琥珀抑制tRNA基因SUP53(tRNALeu3等位基因)被用于研究内含子结构和序列在体内和体外剪接前体tRNA上的作用。该基因编码包含32个碱基的插入序列的前tRNA。构建了两种类型的SUP53内含子突变体:一种具有内部SUP53内含子的内部缺失,一种具有新型内含子。在体外转录这些突变基因,并分析最终加工的转录本作为部分纯化的酿酒酵母tRNA核酸内切酶和连接酶的底物的能力。将这些基因整合到酵母基因组中后,这些突变RNA的体外表型与这些SUP53等位基因的体内抑制子tRNA功能相关。对这些不显示成熟结构域扰动的突变体pre-tRNA的分析清楚地表明,内含子的结构和序列可以对pre-tRNA剪接产生深远的影响。没有有效剪接或未剪接的所有突变RNA仅在5'剪接点处被切割。 3'剪接点附近的内含子的碱基改变可以部分挽救剪接缺陷。讨论了这些数据对tRNA核酸内切酶-底物相互作用的影响。

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