Kim C H, Oh Y, Lee T H
Biotech Research Institute, LG Chem, Taejeon, South Korea.
Gene. 1997 Oct 15;199(1-2):293-301. doi: 10.1016/s0378-1119(97)00384-3.
Codon bias has been observed in many species. The usage of selective codons in a given gene is positively correlated with its expression efficiency. As an experimental approach to study codon-usage effects on heterologous gene expression in mammalian cells, we designed two human erythropoietin (EPO) genes, one in which native codons were systematically substituted with codons frequently found in highly expressed human genes and the other with codons prevalent in yeast genes. Relative performances of the re-engineered EPO genes were evaluated with various combinations of promoters and signal leader sequences. Under the comparable set of combinations, mature EPO gene with human high-frequency codons gave a considerably higher level of expression than that with yeast high-frequency codons. However, the levels of EPO expression varied, depending on the alternate combinations. Since the promoters and the signal leader sequences that we used are known to be equally efficient in gene expression, we hypothesized that the varied expression levels were due to the linear sequence between the promoter and the coding gene sequence. To test this possibility, we designed the EPO gene with hybrid codon usage in which the 5'-proximal region of the EPO gene was synthesized with yeast-biased codons and the rest with human-biased codons. This codon-usage hybrid EPO gene substantially enhanced the level of EPO transcripts and proteins up to 2.9-fold and 13.8-fold, respectively, when compared to the level reached by the original counterpart. Our results suggest that the linear sequence between the promoter and the 5'-proximal region of a gene plays an important role in achieving high-level expression in mammalian cells.
许多物种中都观察到了密码子偏好性。特定基因中选择性密码子的使用与其表达效率呈正相关。作为一种研究密码子使用对哺乳动物细胞中异源基因表达影响的实验方法,我们设计了两个人促红细胞生成素(EPO)基因,一个基因中天然密码子被高表达人类基因中常见的密码子系统地替换,另一个基因中则是酵母基因中普遍存在的密码子。通过启动子和信号前导序列的各种组合来评估重新设计的EPO基因的相对性能。在可比的组合条件下,含有人类高频密码子的成熟EPO基因的表达水平比含有酵母高频密码子的基因高得多。然而,EPO的表达水平因替代组合而异。由于我们使用的启动子和信号前导序列在基因表达中已知具有同等效率,我们推测表达水平的差异是由于启动子和编码基因序列之间的线性序列所致。为了验证这种可能性,我们设计了具有混合密码子使用方式的EPO基因,其中EPO基因的5'近端区域用酵母偏好的密码子合成,其余部分用人类偏好的密码子合成。与原始对应基因相比,这种密码子使用方式的杂交EPO基因分别将EPO转录本和蛋白质的水平大幅提高了2.9倍和13.8倍。我们的结果表明,基因启动子和5'近端区域之间的线性序列在哺乳动物细胞中实现高水平表达方面起着重要作用。