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Molecular engineering of the salicylate-inducible transcription factor Sal7AR for orthogonal and high gene expression in Escherichia coli

机译:水杨酸诱导型转录因子Sal7AR在大肠杆菌中正交和高基因表达的分子工程

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摘要

I have previously identified a metagenomic fragment (~4 kb) containing the salicylate (2-hydroxybenzoate)-responsive transcriptional regulator Sal7AR. Taking advantage of the inert nature of salicylate to common genetic switches used in Escherichia coli, here I developed a salicylate-inducible high expression system in E. coli. I first applied a deletion analysis to the metagenomic fragment to identify the core region (~1 kb) necessary for the salicylate-dependent expression. Sal7AR was subjected to an error-prone PCR, and a library was screened for an enhanced expression of a reporter green fluorescent protein (GFP) gene in the presence of 1 mM salicylate, where virtually no growth inhibition was observed. Three beneficial amino acid substitutions were identified (N282K, Q292R, and V295G), each of which improved the expression of GFP relative to the wildtype by several-fold. The three sites were then completely randomized by saturation mutagenesis either individually or combinatorially to identify three variants carrying a single point mutation, N282L, V295F, or V295S; no further improvements were observed by combining these mutations. Salicylate-dependent expression of these mutants was highly repressed in its absence and escalated in response to ~10 μM salicylate, and gradually increased up to 1 mM salicylate; the induction rate was approximately 15 times greater than that achieved with a lactose promoter. Orthogonality to the lactose-based expression system was also confirmed. This salicylate-based expression system should thus be advantageously used for high-level production of recombinant proteins in combination with common lactose-dependent induction systems.
机译:我以前已经确定了一个宏基因组片段(〜4 kb),其中含有水杨酸酯(2-羟基苯甲酸酯)响应转录调节因子Sal7AR。利用水杨酸对大肠杆菌中常用的遗传开关的惰性,在这里我开发了水杨酸可诱导的大肠杆菌高表达系统。我首先对宏基因组片段进行了缺失分析,以鉴定水杨酸依赖性表达所必需的核心区域(〜1 kb)。对Sal7AR进行易于出错的PCR,并在存在1 mM水杨酸盐的情况下针对报道绿色荧光蛋白(GFP)基因的增强表达筛选文库,实际上未观察到生长抑制。鉴定出三个有益的氨基酸取代(N282K,Q292R和V295G),每个氨基酸取代相对于野生型提高了GFP的表达数倍。然后通过饱和诱变将三个位点完全随机地单独或组合进行完全随机化,以鉴定出携带单点突变的三个变体:N282L,V295F或V295S。通过组合这些突变,未观察到进一步的改善。这些突变体的水杨酸酯依赖性表达在不存在时被高度抑制,并响应于〜10μM水杨酸酯而逐渐升高,并逐渐增加至1 mM水杨酸酯。诱导率约为乳糖启动子的15倍。还证实了基于乳糖的表达系统的正交性。因此,该基于水杨酸酯的表达系统应与常见的乳糖依赖性诱导系统结合起来,有利于高水平生产重组蛋白。

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    Kentaro Miyazaki;

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  • 年(卷),期 -1(13),4
  • 年度 -1
  • 页码 e0194090
  • 总页数 11
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