Hottinger-Werlen A, Schaack J, Lapointe J, Mao J, Nichols M, Söll D
Nucleic Acids Res. 1985 Dec 20;13(24):8739-47. doi: 10.1093/nar/13.24.8739.
Three Schizosaccharomyces pombe dimeric tRNA genes, consisting of a tRNASer gene encoding a minor species with an intervening sequence followed by a tRNAMeti gene, have been described [Mao et al. (1980) Cell 21, 509-516; Hottinger et al. (1982) Mol. Gen. Genet. 188, 219-224; Willis et al. (1984) EMBO J. 3, 1573-1580]. We have examined the reason for the dimeric structure by comparing the transcriptional efficiencies and competitive abilities of the genes subcloned from the dimeric arrangement. Both of the subcloned genes are active in vivo in Saccharomyces cerevisiae, but only the tRNASer gene is efficiently transcribed in vitro. The tRNASer gene competes efficiently for transcription factors, while the tRNAMeti gene does so only weakly. Thus, it appears that the dimeric arrangement is required to support expression of the tRNAMeti gene. S. pombe genes encoding major species of tRNASer are transcribed considerably less efficiently than are the minor genes from the dimers, so coupling of the tRNAMeti gene to the minor species genes should lead to efficient production of tRNAMeti.
已经描述了三个粟酒裂殖酵母二聚体tRNA基因,其中一个tRNASer基因编码一种带有间隔序列的次要tRNA种类,其后跟着一个tRNAMeti基因[毛等人(1980年)《细胞》21卷,509 - 516页;霍廷格等人(1982年)《分子与普通遗传学》188卷,219 - 224页;威利斯等人(1984年)《欧洲分子生物学组织杂志》3卷,1573 - 1580页]。我们通过比较从二聚体排列中克隆的基因的转录效率和竞争能力,研究了二聚体结构的原因。两个克隆基因在酿酒酵母体内均有活性,但只有tRNASer基因在体外能高效转录。tRNASer基因能有效地竞争转录因子,而tRNAMeti基因的竞争能力较弱。因此,似乎二聚体排列是支持tRNAMeti基因表达所必需的。编码主要tRNASer种类的粟酒裂殖酵母基因的转录效率比二聚体中的次要基因低得多,所以将tRNAMeti基因与次要种类基因偶联应该能高效产生tRNAMeti。