Oliveira C C, van den Heuvel J J, McCarthy J E
Department of Gene Expression, GBF-Gesellschaft für Biotechnologische Forschung mbH, Braunschweig, Germany.
Mol Microbiol. 1993 Aug;9(3):521-32. doi: 10.1111/j.1365-2958.1993.tb01713.x.
A new modular gene-expression system for use in studies of translational control in Saccharomyces cerevisiae was constructed. A GAL::PGK fusion promoter (GPF) directed the inducible synthesis of mRNAs initiated at a single major site. A series of leader sequences were tested in combination with each of two reporter genes (encoding chloramphenicol acetyl transferase (cat) and luciferase (luc)). Stem-loop structures of three different sizes and predicted stabilities were inserted into each of two different unique restriction sites in the leader. After correction for relative mRNA abundance, a stem-loop of predicted stability equivalent to approximately -18 kcal mol-1 inhibited translation by up to 89%. The degree of inhibition exerted by the other stem-loops correlated positively with their predicted stabilities. Combinations of two stem-loops at different sites yielded an inhibitory effect greater than that of either individual stem-loop alone. Similar inhibitory effects were observed with both reporter genes. However, inhibition of translation, particularly of the cat gene, was more effective when the stem-loop was positioned close to the start codon rather than at the 5' end of the leader. The observed results reflect an important form of post-transcriptional control that is expected to act on a large number of genes in yeast.
构建了一种用于酿酒酵母翻译控制研究的新型模块化基因表达系统。一个GAL::PGK融合启动子(GPF)指导从单个主要位点起始的mRNA的诱导合成。将一系列前导序列与两个报告基因(编码氯霉素乙酰转移酶(cat)和荧光素酶(luc))中的每一个组合进行测试。将三种不同大小和预测稳定性的茎环结构插入前导序列中两个不同的独特限制性位点中的每一个。在校正相对mRNA丰度后,预测稳定性相当于约-18千卡/摩尔的茎环对翻译的抑制高达89%。其他茎环施加的抑制程度与其预测稳定性呈正相关。不同位点的两个茎环组合产生的抑制作用大于单独任何一个茎环的抑制作用。两个报告基因均观察到类似的抑制作用。然而,当茎环位于靠近起始密码子的位置而不是在前导序列的5'端时,对翻译的抑制,特别是对cat基因的抑制更有效。观察到的结果反映了一种重要的转录后控制形式,预计其作用于酵母中的大量基因。