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首页> 外文期刊>Microbial Cell Factories >Development an effective system to expression recombinant protein in E. coli via comparison and optimization of signal peptides: Expression of Pseudomonas fluorescens BJ-10 thermostable lipase as case study
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Development an effective system to expression recombinant protein in E. coli via comparison and optimization of signal peptides: Expression of Pseudomonas fluorescens BJ-10 thermostable lipase as case study

机译:通过比较和优化信号肽开发一种在大肠杆菌中表达重组蛋白的有效系统:以荧光假单胞菌BJ-10热稳定脂肪酶的表达为例

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Thermostable lipases from microbial sources have been substantially overexpressed in E. coli, however, these enzymes are often produced with low-level enzymatic activity and mainly in the form of inclusion bodies. Several studies have reported that the secretory production of recombinant proteins fused their N-terminus to a signal peptide has been employed to resolve the problem. In general, the feasibility of this approach largely depends on the secretory pathway of signal peptide and the type of target protein to be secreted. This study was performed to compare and optimize signal peptides for efficient secretion of thermostable lipase lipBJ10 from Pseudomonas fluorescens BJ-10. Meanwhile, a comparative study between this method and cytoplasmic secretion was implemented in secreting soluble and active lipases. Fusion expression using six signal peptides, i.e., PelB and five native E. coli signal peptides, as fusion partners produced more soluble and functional recombinant lipBJ10 than non-fusion expression. Recombinant lipBJ10, fused to these six diverse signal peptides, was secreted into the periplasm in E. coli. The total lipase activity in all cases of fusion expression was higher than those in non-fusion expression. The relative activity peaked when lipBJ10 was fused to DsbA, yielding a value 73.3 times greater than that of the non-fusion protein. When DsbA was used as the fusion partner, the highest activity (265.41?U/ml) was achieved with the least formation of inclusion bodies; the other four E. coli signal peptides, to some extent, led to low activity and insoluble inclusion bodies. Therefore, DsbA is the optimal signal peptide partner to fuse with lipBJ10 to efficiently produce soluble and functional protein. We found that fusing to these signal peptides, especially that of DsbA, can significantly decrease the formation of inclusion bodies and enhance the function and solubility of lipBJ10 compared to non-fusion lipBJ10. Our results reported here can provide a reference for the high-level expression of other lipases with respect to a possible industrial application.
机译:来自微生物的热稳定脂肪酶已经在大肠杆菌中大量过量表达,但是,这些酶通常以低水平的酶活性生产,并且主要以包涵体的形式产生。几项研究报告说,分泌蛋白的重组蛋白将其N末端融合到信号肽上已被用来解决该问题。通常,这种方法的可行性很大程度上取决于信号肽的分泌途径和要分泌的靶蛋白的类型。进行该研究以比较和优化信号肽,以有效地从荧光假单胞菌BJ-10分泌热稳定脂肪酶lipBJ10。同时,在分泌可溶性脂肪酶和活性脂肪酶方面进行了该方法与细胞质分泌之间的比较研究。使用六种信号肽(即PelB和五个天然大肠杆菌信号肽)作为融合伴侣的融合表达比非融合表达产生的可溶性和功能性重组lipBJ10更高。与这六个不同信号肽融合的重组lipBJ10被分泌到大肠杆菌的周质中。在所有融合表达情况下,总脂肪酶活性均高于非融合表达情况。当lipBJ10与DsbA融合时,相对活性达到峰值,其值是非融合蛋白的73.3倍。当DsbA用作融合伴侣时,活性最高(265.41?U / ml),包涵体的形成最少。其他四种大肠杆菌信号肽在某种程度上导致活性低下和不溶性包涵体。因此,DsbA是与lipBJ10融合以有效产生可溶性和功能性蛋白质的最佳信号肽伴侣。我们发现,与非融合型lipBJ10相比,融合这些信号肽,尤其是DsbA的信号肽可以显着减少包涵体的形成,并增强lipBJ10的功能和溶解性。本文报道的结果可为其他脂肪酶在可能的工业应用中的高水平表达提供参考。

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