首页> 外文期刊>Canadian journal of microbiology >Characterization and overproduction of the Escherichia coli appA encoded bifunctional enzyme that exhibits both phytase and acid phosphatase activities.
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Characterization and overproduction of the Escherichia coli appA encoded bifunctional enzyme that exhibits both phytase and acid phosphatase activities.

机译:大肠杆菌appA编码的双功能酶的表征和生产过剩,同时显示出植酸酶和酸性磷酸酶的活性。

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摘要

The appA gene that was previously shown to code for an acid phosphatase instead codes for a bifunctional enzyme exhibiting both acid phosphatase and phytase activities. The purified enzyme with a molecular mass of 44,708 Da was further separated by chromatofocusing into two isoforms of identical size with isoelectric points of 6.5 and 6.3. The isoforms had identical pH optima of 4.5 and were stable at pH values from 2 to 10. The temperature optimum for both phytase isoforms was 60 degrees C. When heated at different pH values the enzyme showed the greatest thermal resistance at pH 3. The pH 6.5 isoform exhibited K(m) and Vmax values of 0.79 mM and 3165 U.mg-1 of protein for phytase activity and 5.5 mM and 712 U.mg-1 of protein for acid phosphatase, respectively. The pH 6.3 isoform exhibited slightly lower K(m) and Vmax values. The enzyme exhibited similar properties to the phytase purified by Greiner et al. (1993), except the specific activity of the enzyme was at least 3.5-fold less than that previously reported, and the N-terminal amino acid sequence was different. The Bradford assay, which was used by Greiner et al. (1993) for determination of enzyme concentration was, in our hands, underestimating protein concentration by a factor of 14. Phytase production using the T7 polymerase expression system was enhanced by selection of a mutant able to grow in a chemically defined medium with lactose as the carbon source and inducer. Using this strain in fed-batch fermentation, phytase production was increased to over 600 U.mL-1. The properties of the phytase including the low pH optimum, protease resistance, and high activity, demonstrates that the enzyme is a good candidate for industrial production as a feed enzyme.
机译:先前显示的可编码酸性磷酸酶的appA基因可编码具有酸性磷酸酶和植酸酶活性的双功能酶。通过色谱聚焦将分子量为44,708 Da的纯化酶进一步分离为两个大小相等,等电点分别为6.5和6.3的同工型。这些同工型具有相同的最适pH值4.5,并且在2至10的pH值下稳定。两种植酸酶同工型的最佳温度均为60摄氏度。在不同pH值下加热时,酶在pH 3时显示出最大的耐热性。 6.5亚型的植酸酶活性的K(m)和Vmax值分别为0.79 mM和3165 U.mg-1,酸性磷酸酶分别为5.5 mM和712 U.mg-1。 pH 6.3亚型显示出稍低的K(m)和Vmax值。该酶表现出与Greiner等人纯化的植酸酶相似的特性。 (1993),除了酶的比活性比以前报道的至少低3.5倍,而且N端氨基酸序列不同。 Greiner等人使用的Bradford分析法。 (1993年),在我们手中,酶浓度的估计值低估了蛋白质浓度14倍。通过选择能够在化学成分确定的培养基中生长的乳糖作为突变体,可以增强使用T7聚合酶表达系统生产植酸酶的能力。碳源和诱导剂。在分批补料发酵中使用该菌株,植酸酶的产量增加到超过600 U.mL-1。植酸酶的特性包括低pH最佳值,耐蛋白酶性和高活性,证明该酶是工业生产中作为饲料酶的良好候选者。

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