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Developing a codon optimization method for improved expression of recombinant proteins in actinobacteria

机译:开发密码子优化方法以提高放线菌中重组蛋白的表达

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摘要

Codon optimization by synonymous substitution is widely used for recombinant protein expression. Recent studies have investigated sequence features for codon optimization based on large-scale expression analyses. However, these studies have been limited to common host organisms such as Escherichia coli. Here, we develop a codon optimization method for Rhodococcus erythropolis, a gram-positive GC-rich actinobacterium attracting attention as an alternative host organism. We evaluate the recombinant protein expression of 204 genes in R. erythropolis with the same plasmid vector. The statistical analysis of these expression data reveals that the mRNA folding energy at 5’ regions as well as the codon frequency are important sequence features for codon optimization. Intriguingly, other sequence features such as the codon repetition rate show a different tendency from the previous study on E. coli. We optimize the coding sequences of 12 genes regarding these sequence features, and confirm that 9 of them (75%) achieve increased expression levels compared with wild-type sequences. Especially, for 5 genes whose expression levels for wild-type sequences are small or not detectable, all of them are improved by optimized sequences. These results demonstrate the effectiveness of our codon optimization method in R. erythropolis, and possibly in other actinobacteria.
机译:通过同义词替换进行的密码子优化已广泛用于重组蛋白表达。最近的研究已经研究了基于大规模表达分析的密码子优化的序列特征。但是,这些研究仅限于常见的宿主生物,例如大肠杆菌。在这里,我们为红球红球菌(一种革兰氏阳性富含GC的放线菌)作为替代宿主生物引起了人们的关注,开发了一种密码子优化方法。我们用相同的质粒载体评估了R. erythropolis中204基因的重组蛋白表达。这些表达数据的统计分析表明,在5'区域的mRNA折叠能以及密码子频率是密码子优化的重要序列特征。有趣的是,其他序列特征(例如密码子重复率)显示出与先前对大肠杆菌的研究不同的趋势。我们针对这些序列特征优化了12个基因的编码序列,并确认其中9个(75%)与野生型序列相比,表达水平有所提高。尤其是,对于野生型序列表达水平很小或无法检测的5个基因,所有这些都可以通过优化序列得到改善。这些结果证明了我们的密码子优化方法在R. erythropolis和其他放线菌中的有效性。

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