Gaëta B A, Sharp S J, Stewart T S
School of Biochemistry, University of New South Wales, Kensington, Australia.
Nucleic Acids Res. 1990 Mar 25;18(6):1541-8. doi: 10.1093/nar/18.6.1541.
Transcription of eukaryotic tRNA genes is dependent on the A- and B-Box internal control regions (ICRs) and the upstream transcription modulatory region. The B-Box ICR spans nucleotides 52 to 62 and directs the primary binding of transcription factor C as the first step in the formation of a transcription complex. The conservation of the sequence of the B-Box in all tRNA species reflects its importance in both the expression of the gene and the processing, structure and function of the gene product. In order to identify the nucleotides essential to the promoter function of the B-Box ICR, site-directed mutagenesis was used to generate all the possible single point mutations at positions 52 to 58, 61 and 62 of a Drosophila melanogaster tRNA(Arg) gene. The effect of these mutations on gene transcription was evaluated using in vitro transcription and template exclusion competition assays. Optimal activity was displayed by the wild type tDNA(Arg) B-Box sequence but several other sequences supported in vitro transcription at wild type levels. The majority of mutants, however, showed lower efficiency in the in vitro transcription assay. Of the single point mutations, those at positions 53, 55, and 56 had a critical effect on gene function in Drosophila and HeLa transcription extracts and transcription factor interaction most likely requires base contacts at these positions. Since the effect of several of the point mutations cannot be explained in terms of possible major or minor groove contributions the possibility is raised that local DNA geometry also is an important determinant in specifying B-Box function.
真核生物tRNA基因的转录依赖于A盒和B盒内部控制区(ICR)以及上游转录调节区。B盒ICR跨越核苷酸52至62,并指导转录因子C的初级结合,这是转录复合物形成的第一步。所有tRNA物种中B盒序列的保守性反映了其在基因表达以及基因产物的加工、结构和功能方面的重要性。为了确定对于B盒ICR启动子功能至关重要的核苷酸,使用定点诱变在黑腹果蝇tRNA(Arg)基因的52至58、61和62位产生所有可能的单点突变。使用体外转录和模板排除竞争试验评估这些突变对基因转录的影响。野生型tDNA(Arg)B盒序列表现出最佳活性,但其他几个序列也支持野生型水平的体外转录。然而,大多数突变体在体外转录试验中显示出较低的效率。在单点突变中,53、55和56位的突变对果蝇和HeLa转录提取物中的基因功能有关键影响,转录因子相互作用很可能需要这些位置的碱基接触。由于几个点突变的影响无法用可能的大沟或小沟贡献来解释,因此提出了局部DNA几何形状也是决定B盒功能的重要因素这一可能性。