Seo Sang Woo, Yang Jina, Jung Gyoo Yeol
Department of Chemical Engineering, Pohang University of Science and Technology, Pohang, Gyeongbuk 790-784, Korea.
Biotechnol Bioeng. 2009 Oct 15;104(3):611-6. doi: 10.1002/bit.22431.
Translational efficiency in Escherichia coli is known to be strongly influenced by the secondary structure around the ribosome-binding site and the initiation codon in the translational-initiation region of the mRNA. Several quantitative studies have reported that translational efficiency is attributable to effects on ribosome accessibility predominantly caused by the secondary structure surrounding the ribosome-binding site. However, the influence of mRNA secondary structure around regions downstream of the initiation codon on translational efficiency after ribosome-binding step has not been quantitatively studied. Here, we quantitatively analyzed the relationship between secondary structure of mRNA surrounding the region downstream of the initiation codon, referred to as the downstream region (DR), and protein expression levels. Modified hairpin structures containing the initiation codon were constructed by site-directed mutagenesis, and their effects on expression were analyzed in vivo. The minimal folding free energy (DeltaG) of a local hairpin structure was found to be linearly correlated with the relative expression level over a range of fourfold change. These results demonstrate that expression level can be quantitatively controlled by changing the stability of the secondary structure surrounding the DR.
已知在大肠杆菌中,翻译效率受到mRNA翻译起始区域核糖体结合位点和起始密码子周围二级结构的强烈影响。多项定量研究报告称,翻译效率主要归因于核糖体结合位点周围二级结构对核糖体可及性的影响。然而,起始密码子下游区域的mRNA二级结构对核糖体结合步骤后翻译效率的影响尚未得到定量研究。在此,我们定量分析了起始密码子下游区域(称为下游区域,DR)周围mRNA二级结构与蛋白质表达水平之间的关系。通过定点诱变构建了包含起始密码子的修饰发夹结构,并在体内分析了它们对表达的影响。发现局部发夹结构的最小折叠自由能(ΔG)在四倍变化范围内与相对表达水平呈线性相关。这些结果表明,通过改变DR周围二级结构的稳定性,可以定量控制表达水平。