Yun D F, Laz T M, Clements J M, Sherman F
Department of Biochemistry, University of Rochester, School of Medicine and Dentistry, New York 14642, USA.
Mol Microbiol. 1996 Mar;19(6):1225-39. doi: 10.1111/j.1365-2958.1996.tb02468.x.
The secondary structure and sequences influencing the expression and selection of the AUG initiator codon in the yeast Saccharomyces cerevisiae were investigated with two fused genes, which were composed of either the CYC7 or CYC1 leader regions, respectively, linked to the lacZ coding region. In addition, the strains contained the upf1-delta disruption, which stabilized mRNAs that had premature termination codons, resulting in wild-type levels. The following major conclusions were reached by measuring beta-galactosidase activities in yeast strains having integrated single copies of the fused genes with various alterations in the 89 and 38 nucleotide-long untranslated CYC7 and CYC1 leader regions, respectively. The leader region adjacent to the AUG initiator codon was dispensable, but the nucleotide preceding the AUG initiator at position -3 modified the efficiency of translation by less than twofold, exhibiting an order of preference A > G > C > U. Upstream out-of-frame AUG triplets diminished initiation at the normal site, from essentially complete inhibition to approximately 50% inhibition, depending on the position of the upstream AUG triplet and on the context (-3 position nucleotides) of the two AUG triplets. In this regard, complete inhibition occurred when the upstream and downstream AUG triplets were closer together, and when the upstream and downstream AUG triplets had, respectively, optimal and suboptimal contexts. Thus, leaky scanning occurs in yeast, similar to its occurrence in higher eukaryotes. In contrast, termination codons between two AUG triplets causes reinitiation at the downstream AUG in higher eukaryotes, but not generally in yeast. Our results and the results of others with GCN4 mRNA and its derivatives indicate that reinitiation is not a general phenomenon in yeast, and that special sequences are required.
利用两个融合基因研究了影响酿酒酵母中AUG起始密码子表达和选择的二级结构及序列,这两个融合基因分别由CYC7或CYC1前导区与lacZ编码区相连组成。此外,这些菌株含有upf1-δ缺失,该缺失使具有提前终止密码子的mRNA稳定,从而产生野生型水平。通过测量在酵母菌株中β-半乳糖苷酶的活性得出以下主要结论,这些酵母菌株整合了单拷贝的融合基因,其分别在89和38个核苷酸长的未翻译CYC7和CYC1前导区有各种改变。紧邻AUG起始密码子的前导区是可有可无的,但在起始密码子AUG上游-3位置的核苷酸使翻译效率改变不到两倍,呈现出A>G>C>U的偏好顺序。上游框外AUG三联体降低了正常位点的起始效率,从基本完全抑制到约50%的抑制,这取决于上游AUG三联体的位置以及两个AUG三联体的上下文(-3位置核苷酸)。在这方面,当上下游AUG三联体靠得更近,以及上下游AUG三联体分别具有最佳和次优上下文时,会发生完全抑制。因此,酵母中发生了漏扫描,类似于在高等真核生物中的情况。相比之下,两个AUG三联体之间的终止密码子在高等真核生物中会导致下游AUG处的重新起始,但在酵母中通常不会。我们的结果以及其他人对GCN4 mRNA及其衍生物的研究结果表明,重新起始在酵母中不是普遍现象,并且需要特殊序列。