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Partial purification and characterization of phytase from Aspergillus foetidus MTCC 11682

机译:MTCC 11682的部分纯化和特征化 foetidus 植酸酶

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Phytase is a phosphatase enzyme widely used as feed additive to release inorganic phosphorus from plant phytate and enhance its uptake in monogastric animals. Although engineered fungal phytases are used most, a natural enzyme gives opportunity to understand novel properties, if any. In the current study, a novel fungal strain, Aspergillus foetidus MTCC 11682 was immobilized on poly urethane cubes and used for phytase production, purification and molecular characterization. Phytase produced by this method was partially purified by ammonium sulphate precipitation and Sephacryl S-200HR gel filtration to 23.4-fold (compared to crude extract) with recovery of 13% protein. Electrophoresis analysis revealed that phytase has molecular weight of 90.5?kDa on non-reducing and 129.6?kDa on reducing SDS-PAGE. The purified phytase exhibited a wider pH and temperature stability. Analysis of the cloned sequence showed that the gene has 1176?bp that encodes for a peptide of 391 amino acids of the core catalytic region. It was also found that phytase from A. foetidus has a sequence identity of 99% with the phytase gene of other Aspergillus species at nucleotide level and 100% at protein level in A. niger , A. awamori , A. oryzae. In silico analysis of sequence identified the presence of two consecutive and one non-consecutive intra chain disulfide bonds in the phytase. This probably contributed to the differential migration of phytase on reducing and non-reducing SDS-PAGE. There are predicted 11 O -glycosylation sites and 8 N -glycosylation sites, possibly contributed to an enhanced stability of enzyme produced by this organism. This study opened up a new horizon for exploring the novel properties of phytase for other applications.
机译:植酸酶是一种磷酸酶,广泛用作饲料添加剂,可从植物植酸中释放出无机磷,并增强其在单胃动物中的吸收。尽管最常使用工程化的真菌植酸酶,但天然酶为了解新特性(如果有)提供了机会。在当前的研究中,一种新型真菌菌株Asetgillus foetidus MTCC 11682被固定在聚氨酯立方体上,用于植酸酶的生产,纯化和分子鉴定。通过硫酸铵沉淀和Sephacryl S-200HR凝胶过滤将通过该方法生产的植酸酶部分纯化至23.4倍(与粗提物相比),回收率为13%的蛋白质。电泳分析表明,植酸酶非还原时的分子量为90.5?kDa,还原SDS-PAGE时的分子量为129.6?kDa。纯化的植酸酶表现出较宽的pH和温度稳定性。对克隆序列的分析表明,该基因具有1176bp的长度,编码核心催化区391个氨基酸的肽。还发现在黑曲霉,泡盛曲霉,米曲霉中,来自油曲霉的植酸酶与其他曲霉菌种的植酸酶基因在核苷酸水平上具有99%的序列同一性,在蛋白质水平上与蛋白质中的100%具有相同的序列同一性。在序列上的计算机分析中鉴定出植酸酶中存在两个连续的和一个非连续的链内二硫键。这可能导致植酸酶在还原和非还原SDS-PAGE上的差异迁移。预测有11个O-糖基化位点和8个N-糖基化位点,可能有助于提高这种生物体产生的酶的稳定性。这项研究为探索植酸酶用于其他应用的新特性开辟了新的视野。

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