Tuohy T M, Li Z, Atkins J F, Deutscher M P
Department of Human Genetics, Eccles Institute of Human Genetics, University of Utah, Salt Lake City 84112-1107.
J Mol Biol. 1994 Feb 4;235(5):1369-76. doi: 10.1006/jmbi.1994.1093.
An unusual, spontaneously arising mutant of Escherichia coli tRNA(2Arg) has been deduced to have two extra nucleotides in its anticodon loop and a duplication of ten nucleotide residues in the TFC loop. This conclusion is based on its gene sequence, Northern blot analysis of isolated tRNA and the size of the in vitro-processed tRNA product. In vitro analyses showed that the mutant precursor is processed normally, albeit inefficiently, to a mature tRNA species 12 nucleotides longer than the wild-type. In addition, the mature tRNA functions as a frameshift suppressor in vivo. Several related mutants with more conservative changes within the gene sequence were similarly shown to be accurately processed, albeit with varying degrees of efficiency less than that of the wild-type. These results indicate that in spite of the high degree of evolutionary conservation of the tertiary structure of tRNAs, and the fact that no such naturally-occurring variant has been found, a greatly enlarged tRNA is capable of functioning in protein synthesis. The data also indicate that recognition sites for correct processing of precursor tRNAs may be unexpectedly tolerant of unusual context, and may depend on some specific features of the tertiary structure rather than the overall structure for accurate processing.
已推断出一种异常的、自发产生的大肠杆菌tRNA(2Arg)突变体,其反密码子环中有两个额外的核苷酸,且TFC环中有十个核苷酸残基的重复序列。这一结论基于其基因序列、对分离出的tRNA进行的Northern印迹分析以及体外加工的tRNA产物的大小。体外分析表明,该突变体前体能够正常加工,尽管效率不高,加工后的成熟tRNA比野生型长12个核苷酸。此外,成熟的tRNA在体内发挥移码抑制作用。基因序列中具有更保守变化的几个相关突变体同样被证明能够准确加工,尽管效率各不相同且均低于野生型。这些结果表明,尽管tRNA三级结构具有高度的进化保守性,且尚未发现此类天然存在的变体,但大大扩大的tRNA仍能够在蛋白质合成中发挥作用。数据还表明,前体tRNA正确加工的识别位点可能意外地容忍异常情况,并且可能取决于三级结构的某些特定特征而非整体结构以进行准确加工。