首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Construction of an Efficient Nicotinate Dehydrogenase Expression System inComamonas testosteroniCNB-2 with Multi-level N-Terminal Engineering
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Construction of an Efficient Nicotinate Dehydrogenase Expression System inComamonas testosteroniCNB-2 with Multi-level N-Terminal Engineering

机译:用多级N末端工程构建高效烟蛋白脱氢酶表达系统Incomamonas TestosteronicnB-2

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Nicotinate dehydrogenase (NDHase) is a membrane protein with three subunits (ndhS, ndhL, and ndhM), which is difficult to express in a functional form using common hosts such asEscherichia coli,Bacillus subtilis, orPichia pastoris.Comamonas testosteroniis a suitable microbial chassis for expressing multi-subunit membrane proteins. However, the expression of NDHase inC. testosteroniis extremely low. We have developed a systematic approach to create an efficient protein expression system inC. testosteroniCNB-2 using multi-level N-terminal engineering. We selected a strong promoter for the Mmp1 system that enables control of transcriptional strength in unconventional bacteria. This enhanced the expression of a green fluorescent reporter protein threefold. Following modification of the N-terminal Shine-Dalgarno sequence and rearrangement of amino acid sequence in the starting area of the gene encoding NDHase, enzyme activity increased from 90.6 to 165 U/L. These optimized N-terminal Shine-Dalgarno and amino acid sequences were used to enhance the expression of ndhL subunit and improve the balance expression of three subunits of NDHase, resulting in enzyme activity of 192 U/L that far surpasses the previously reported level. These results highlight a promising strategy for the development of other heterologous expression systems for challenging proteins using unconventional bacteria.
机译:烟酸脱氢酶(Ndhase)是一种膜蛋白,其具有三个亚基(NDHS,NDH1和NDHM),其难以使用常见的宿主,芽孢杆菌,枯草芽孢杆菌,植物孢菌,奥菲亚斯科西斯金属蛋白酶AmaNAS Testoroniis是一种合适的微生物底盘表达多亚基膜蛋白。但是,NDHase Inc的表达。睾丸组是极低的。我们制定了一种系统的方法来创建有效的蛋白质表达系统公司。试验睾师NB-2使用多级N末端工程。我们为MMP1系统选择了一个强大的推动者,可以控制非传统细菌中的转录强度。这增强了绿色荧光报道蛋白三倍的表达。在编码NDHase基因的原因的起始面积中改变N-末端发光-Dalgarno序列和重排氨基酸序列,酶活性从90.6增加到165 U / L.这些优化的N-末端发光达格尔诺和氨基酸序列用于增强NDHL亚基的表达,改善NDHase的三个亚基的平衡表达,导致192 U / L的酶活性远远超过先前报告的水平。这些结果突出了利用非常规细菌挑战蛋白质的其他异源表达系统的开发的有希望的策略。

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