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Molecular cloning, over expression and characterization of thermoalkalophilic esterases isolated from Geobacillus sp

机译:从地芽孢杆菌分离的嗜热嗜碱酯酶的分子克隆,过表达和表征

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摘要

Due to potential use for variety of biotechnological applications, genes encoding thermoalkalophilic esterase from three different Geobacillus strains isolated from thermal environmental samples in Balçova (Agamemnon) geothermal site were cloned and respective proteins were expressed in Escherichia coli (E. coli) and characterized in detail. Three esterases (Est1, Est2, Est3) were cloned directly by PCR amplification using consensus degenerate primers from genomic DNA of the strains Est1, Est2 and Est3 which were from mud, reinjection water and uncontrolled thermal leak, respectively. The genes contained an open reading frame (ORF) consisting of 741 bp for Est1 and Est2, which encoded 246 amino acids and ORF of Est3 was 729 bp encoded 242 amino acids. The esterase genes were expressed in E. coli and purified using His-Select HF nickel affinity gel. The molecular mass of the recombinant enzyme for each esterase was approximately 27. 5 kDa. The three esterases showed high specific activity toward short chain p-NP esters. Recombinant Est1, Est2, Est3 have exhibited similar activity and the highest esterase activity of 1,100 U/mg with p-nitrophenyl acetate (pNPC2) as substrate was observed with Est1. All three esterase were most active around 65°C and pH 9.5-10.0. The effect of organic solvents, several metal ions, inhibitors and detergents on enzyme activity for purified Est1, Est2, Est3 were determined separately and compared.
机译:由于可能用于多种生物技术应用,克隆了从Balçova(Agamemnon)地热站点的热环境样品中分离的三种不同地芽孢杆菌菌株编码嗜热嗜碱酯酶的基因,并在大肠杆菌(E. coli)中表达了各自的蛋白质并进行了详细表征。通过使用来自菌株Est1,Est2和Est3的基因组DNA的共有简并引物分别通过泥浆,回注水和不受控制的热泄漏,通过PCR扩增直接克隆了三种酯酶(Est1,Est2,Est3)。该基因包含一个开放阅读框(ORF),由Est1和Est2的741 bp组成,编码246个氨基酸,Est3的ORF为729 bp,编码242个氨基酸。酯酶基因在大肠杆菌中表达,并使用His-Select HF镍亲和凝胶纯化。每种酯酶的重组酶的分子量约为27. 5 kDa。这三种酯酶显示出对短链p-NP酯的高比活性。重组Est1,Est2,Est3表现出相似的活性,并且以Est1观察到以对硝基乙酸苯酯(pNPC2)为底物的最高酯酶活性为1100 U / mg。所有这三种酯酶在65°C和pH 9.5-10.0时最活跃。分别确定并比较了有机溶剂,几种金属离子,抑制剂和去污剂对纯化的Est1,Est2,Est3酶活性的影响。

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