Chambers J, Raymond G J, Kim D, Raymond K C, Nelson C, Clark S, Johnson J D
Department of Molecular Biology, University of Wyoming, Laramie 82071.
Biochim Biophys Acta. 1990 Apr 6;1048(2-3):156-64. doi: 10.1016/0167-4781(90)90051-3.
We have introduced mutations into a tRNALeu3 gene which alter the intron boundaries and examined their effects on RNA splicing. Our results show that the 5'-proximal splice junction is not specified by the position of an adjacent base-paired stem present in all naturally occurring tRNA precursors. Also, efficient cleavage of 5'-splice junctions unique to these mutants, -CpU-, -UpA- and -UpG-, indicates the purine found at the 5'-side of this site in all natural precursors is dispensable. Some alterations of the sequence and structure at the 5'-proximal splice site reduce the rate of cleavage therein and result in accumulation of molecules composed of the 5'-half of the tRNA plus the intron. The precise position of the 5'-proximal cleavage site can vary +/- 1 base in these mutants. The 3'-proximal splice junction is rendered inactive by changing the prospective splice junction sequence from -ApC- to -CpC- and reducing the size of an unpaired loop at this site from six to two bases. Very small amounts of RNA composed of the 3'-half of the tRNA plus the intron accumulate from this precursor. We conclude that splice junction sequence and structure affect both the rate and precision of intervening sequence removal.
我们已将突变引入亮氨酰 - tRNA3基因,这些突变改变了内含子边界,并研究了它们对RNA剪接的影响。我们的结果表明,5'近端剪接位点并非由所有天然存在的tRNA前体中相邻碱基配对茎的位置所决定。此外,这些突变体特有的5'剪接位点(-CpU-、-UpA-和-UpG-)的有效切割表明,在所有天然前体中该位点5'侧发现的嘌呤是可有可无的。5'近端剪接位点处序列和结构的一些改变会降低其中的切割速率,并导致由tRNA的5'半部分加内含子组成的分子积累。在这些突变体中,5'近端切割位点的精确位置可能会有±1个碱基的变化。通过将预期的剪接位点序列从-ApC-改变为-CpC-,并将该位点未配对环的大小从六个碱基减少到两个碱基,3'近端剪接位点变得无活性。由tRNA的3'半部分加内含子组成的极少量RNA从该前体中积累。我们得出结论,剪接位点序列和结构会影响间隔序列去除的速率和精确性。