运用生物信息学技术从嗜热脂肪芽孢杆菌(Geobacillus stearothermophilus) CICC 20156中克隆获得羧酸酯酶基因,构建黑曲霉和毕氏酵母表达质粒,将重组质粒分别转化毕氏酵母GS115和黑曲霉pyrG基因缺陷株M54.SDS-PAGE和Western blot检测显示:携带His标记的外源蛋白在转化真菌宿主中均获得了高效分泌性表达,毕氏酵母和黑曲霉表达的外源蛋白分子质量均约为29 ku,蛋白质浓度分别为30.7 mg/L和15.3 mg/L.生物学活性测定表明,毕氏酵母与黑曲霉表达的羧酸酯酶单位蛋白酶活分别为22 671 U/mg和21 438 U/mg.酶学性质研究显示,两种表达系统表达的重组羧酸酯酶的酶学特性基本一致,它们在40~70℃范围内均显示较好的酶活性,最适反应温度为60℃.70℃处理30 min,毕氏酵母和黑曲霉表达重组羧酸酯酶残余酶活分别为 76.7%和67.6%,显示出良好的热稳定性.在pH 6.5~8.5的范围内显示较高酶活性,最适pH为8.0.上述研究首次实现了具有良好热稳定性的嗜热脂肪芽孢杆菌羧酸酯酶在黑曲霉和毕氏酵母中高效异源分泌性表达,其中毕氏酵母羧酸酯酶的产量要高于黑曲霉的酶产量,但考虑到重组黑曲霉表达外源性蛋白无需使用任何诱导剂,黑曲霉菌表达热稳定性羧酸酯酶可能具有更好的应用前景.
The carboxylesterase gene of Geobacillus stearothermophilus CICC 20156 was cloned by bioinformatics technology and then was inserted into the expression vectors pPIC9K and pYG1.2. The recombined plasmids were transformed into yeast Pichia pastoris GS115 and Aspergillus niger M54 respectively. It was revealed by SDS-PAGE and Western blot that the exogenous protein of about 29 ku with a His-tag each were secreted by the transformed hosts into the external mediums. The concentration of recombinant carboxylesterase in medium excreted by Pichia pastoris and Aspergillus niger was 30.7 mg/L and 15.3 mg/L respectively. Bioactivity assay indicated that the carboxylesterase activity was 22 671 U/mg for the enzyme expressed by Pichia pastoris and 21 438 U/mg for that expressed by Aspergillus niger. The research results also showed that both enzymes expressed by the two kinds of hosts possess similar characteristic. The recombinant enzyme exhibited thermostability with optimum temperature at 60℃ and remained 76.7%~67.6% activity even after incubation at 70℃ for 30 min. The enzyme also showed a broader pH tolerance and the optimum pH for the enzyme activity was at 8.0. This is the first report that the thermostable carboxylesterase of Geobacillus stearothermophilus was highly secretively expressed in Aspergillus niger and Pichia pastoris. Though the amount of carboxylesterase excreted by recombined Aspergillus niger was lower than that excreted by recombined Pichia. pastoris, the engineering Aspergillus niger may still show a better perspective for potential applications in biotechnological industries, for no inducer is needed to get crude carboxylesterases in the culture supernatants of it.
孙锦霞,刘钟滨.嗜热脂肪芽孢杆菌羧酸酯酶的异源表达及酶学性质研究[J].生物化学与生物物理进展,2010,37(9):967-974
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