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首页> 外文期刊>World Journal of Microbiology & Biotechnology >mRNA secondary structure engineering of Thermobifida fusca endoglucanase (Cel6A) for enhanced expression in Escherichia coli
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mRNA secondary structure engineering of Thermobifida fusca endoglucanase (Cel6A) for enhanced expression in Escherichia coli

机译:Thermobifida fusca内切葡聚糖酶(Cel6a)的MRNA二次结构工程,用于增强大肠杆菌的表达

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The sequence and structure of mRNA plays an important role in solubility and expression of the translated protein. To divulge the role of mRNA secondary structure and its thermodynamics in the expression level of the recombinant endoglucanase in Escherichia coli, 5'-end of the mRNA was thermodynamically optimized. Molecular engineering was done by introducing two silent synonymous mutations at positions +5 (UCU with UCC) and +7 (UUC with UUU) of the 5'-end of mRNA to relieve hybridization with ribosomal binding site. Two variants of glycoside hydrolase family six endoglucanase, wild type (cel6A.wt) and mutant (cel6A.mut) from Thermobifida fusca were expressed and characterized in E. coli using T7 promoter-based expression vector; pET22b(+). Enhanced expression level of engineered construct (Cel6A.mut) with a dagger G = -2.7 kcal mol(-1)was observed. It showed up to similar to 45 % higher expression as compared to the wild type construct (Cel6A.wt) having a dagger G = -7.8 kcal mol(-1) and similar to 25 % expression to the total cell proteins. Heterologous protein was purified by heating the recombinant E. coli BL21 (DE3) CodonPlus at 60 A degrees C. The optimum pH for enzyme activity was six and optimum temperature was 60 A degrees C. Maximum activity was observed 4.5 Umg(-1) on CMC. Hydrolytic activity was also observed on insoluble substrates, i.e. RAC (2.8 Umg(-1)), alkali treated bagass (1.7 Umg(-1)), filter paper (1.2 Umg(-1)) and BMCC (0.3 Umg(-1)). Metal ions affect endoglucanase activity in different ways. Only Fe2+ exhibited 20.8 % stimulatory effects on enzyme activity. Enzyme activity was profoundly inhibited by Hg2(+) (91.8 %).
机译:mRNA的序列和结构在翻译蛋白质的溶解度和表达中起重要作用。为了透过MRNA二级结构的作用及其在大肠杆菌中重组内葡聚糖酶的表达水平中的热力学,热力学优化的5'-末端。通过在MRNA的5'-末端在MRNA的位置+5(UCU)和+7(UUUC)的敏感同义突变在mRNA的位置+7(UUUC)来完成分子工程,以缓解与核糖体结合位点的杂交。使用T7启动子的表达载体表达来自Thermobifida FUSCA的糖苷水解酶系列六个内葡聚糖酶,野生型(Cel6a.wt)和突变体(Cel6a.mut)的突变体(Cel6a.mut); PET22B(+)。观察到具有匕首G = -2.7kcal(-1)的工程构建体(Cel6a.mut)的增强表达水平。与具有匕首G = -7.8kcal摩尔(-1)的野生型构建体(Cel6a.wt)相比,它显示出类似于45%的更高表达。与总细胞蛋白相似的25%表达。通过在60℃下加热重组大肠杆菌BL21(DE3)CODONPLU来纯化异源蛋白质。酶活性的最佳pH为6,最佳温度为60℃。观察到最大活性4.5 umg(-1) CMC。在不溶性基材上也观察到水解活性,即RAC(2.8UMG(-1)),碱处理的巴比索(1.7UMG(-1)),滤纸(1.2MUG(-1))和BMCC(0.3 umg(-1 )))。金属离子以不同方式影响内切葡聚糖酶活性。只有Fe2 +对酶活性表现出20.8%的刺激作用。 Hg2(+)(91.8%)深受酶活性。

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