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首页> 外文期刊>The Open Microbiology Journal >Heterologous Expression of Histidine Acid Phytase From Pantoea sp. 3.5.1 in Methylotrophic Yeast Pichia Pastoris
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Heterologous Expression of Histidine Acid Phytase From Pantoea sp. 3.5.1 in Methylotrophic Yeast Pichia Pastoris

机译:单酸盐盐植酸酶的异源表达。 3.5.1在甲基雌性酵母Pichia Pastoris中

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Background and Objective: The major storage form of phosphorus in plant-derived feed is presented by phytates and not digested by animals. Phytases are able to hydrolyze phytates and successfully used as feed additives. Nevertheless, nowadays, there is a constant search of new phytases and expression systems for better production of these enzymes. In this study, we describe cloning and expression of gene encoding histidine acid phytase from Pantoea sp. 3.5.1 using methylotrophic yeast Pichia pastoris as the host. Methods: The phytase gene was placed under the control of the methanol-inducible AOX1 promoter and expressed in P. pastoris. Experiments of small-scale phytase expression and activity assays were used to test recombinant colonies. Four different signal peptides were screened for better secretion of phytase by P. pastoris. After 36 h of methanol induction in shake flasks, the maximum extracellular phytase activity (3.2 U/ml) was observed in P. pastoris strain with integrated construct based on pPINK-HC vector and Kluyveromyces maxianus inulinase gene signal sequence. This phytase was isolated and purified using affinity chromatography. Results: Recombinant phytase was a glycosylated protein, had a molecular weight of around 90 kDa and showed maximum activity at pH 4.0 and at 50°C. Recombinant phytase had excellent thermal stability – it retained high residual activity (100% ± 2%) after 1 hour of heat treatment at 70°C. Conclusion: The enhanced thermostability of the recombinant phytase, its expression provided by strong inducible promotor and the effectively designed expression cassette, the simple purification procedure of the secreted enzyme, and the possibility of large-scale expression make the foundation for further production of this bacterial phytase in P. pastoris at an industrial scale.
机译:背景和目的:植物衍生饲料中的主要储存形式由植物呈植物呈现,并未被动物消化。植酸酶能够水解植物并成功用作饲料添加剂。然而,如今,持续搜索新的植物酶和表达系统,以便更好地生产这些酶。在该研究中,我们描述了从Pantoea SP编码组氨酸酸植物酶的基因的克隆和表达。 3.5.1使用甲基雌性酵母Pichia Pastoris作为宿主。方法:将植酸酶基因置于甲醇诱导型AxOx1启动子的对照下,并以P. Pastoris表达。小型植酸酶表达和活性测定的实验用于测试重组菌落。筛选四种不同的信号肽以通过P. Pastoris更好地分泌植酸酶。在摇瓶中甲醇诱导36小时后,在PPink-HC载体和Kluyveromyces Maxianus inulinase基因信号序列中,在P. Pastoris菌株中观察到最大细胞外植酸酶活性(3.2u / ml)。使用亲和层析分离并纯化该植酸酶。结果:重组植酸酶是糖基化蛋白质,分子量约为90kDa,并在pH 4.0和50℃下显示最大活性。重组植酸酶具有优异的热稳定性 - 在70℃下热处理1小时后保留高残留活性(100%±2%)。结论:重组植酸酶的增强型恒温性,其表达由强诱导型促进剂和有效设计的表达盒提供,分泌酶的简单纯化方法,以及大规模表达的可能性使得进一步生产这种细菌的基础P. Pastoris的Phytase以工业规模。

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