生物信息学
异源表达
肽序列
编码区
生物
序列(生物学)
大肠杆菌
基因
氨基酸
翻译(生物学)
计算生物学
合理设计
蛋白质测序
生物化学
蛋白质折叠
无声突变
重组DNA
蛋白质生物合成
遗传学
信使核糖核酸
突变
错义突变
作者
Wei Chen,Jingjie Jin,Wei Gu,Bo Wei,Yun Lei,Sheng Xiong,Gong Zhang
标识
DOI:10.1016/j.jbiotec.2014.08.031
摘要
The production of many pharmaceutical and industrial proteins in prokaryotic hosts is hindered by the insolubility of industrial expression products resulting from misfolding. Even with a correct primary sequence, an improper translation elongation rate in a heterologous expression system is an important cause of misfolding. In silico analysis revealed that most of the endogenous Escherichia coli genes display translational pausing sites that promote correct folding, and almost 1/5 genes have pausing sites at the 3′-termini of their coding sequence. Therefore, we established a novel strategy to efficiently promote the expression of soluble and active proteins without altering the amino acid sequence or expression conditions. This strategy uses the rational design of translational pausing based on structural information solely through synonymous substitutions, i.e. no change on the amino acids sequence. We demonstrated this strategy on a promising antiviral candidate, Cyanovirin-N (CVN), which could not be efficiently expressed in any previously reported system. By introducing silent mutations, we increased the soluble expression level in E. coli by 2000-fold without altering the CVN protein sequence, and the specific activity was slightly higher for the optimized CVN than for the wild-type variant. This strategy introduces new possibilities for the production of bioactive recombinant proteins
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