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首页> 外文期刊>Journal of applied microbiology >Cloning and expression of Bacillus phytase gene (phy) in Escherichia coli and recovery of active enzyme from the inclusion bodies.
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Cloning and expression of Bacillus phytase gene (phy) in Escherichia coli and recovery of active enzyme from the inclusion bodies.

机译:芽孢杆菌肌醇六磷酸酶基因(phy)的克隆在大肠杆菌中表达,并从包涵体中回收活性酶。

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AIMS: To isolate, clone and express a novel phytase gene (phy) from Bacillus sp. in Escherichia coli; to recover the active enzyme from inclusion bodies; and to characterize the recombinant phytase. METHODS AND RESULTS: The molecular weight of phytase was estimated as 40 kDa on SDS-polyacrylamide gel electrophoresis. A requirement of Ca(2+) ions was found essential both for refolding and activity of the enzyme. Bacillus phytase exhibited a specific activity of 16 U mg(-1) protein; it also revealed broad pH and temperature ranges of 5.0 to 8.0 and 25 to 70 degrees C, respectively. The K(m) value of phytase for hydrolysis of sodium phytate has been determined as 0.392 mmol l(-1). The activity of enzyme has been inhibited by EDTA. The enzyme exhibited ample thermostability upon exposure to high temperatures from 75 to 95 degrees C. After 9 h of cultivation of transformed E. coli in the bioreactor, the cell biomass reached 26.81 g wet weight (ww) per l accounting for 4289 U enzyme activity compared with 1.978 g ww per l producing 256 U activity in shake-flask cultures. In silico analysis revealed a beta-propeller structure of phytase. CONCLUSIONS: This is the first report of its kind on the purification and successful in vitro refolding of Bacillus phytase from the inclusion bodies formed in the transformed E. coli. SIGNIFICANCE AND IMPACT OF THE STUDY: Efficient and reproducible protocols for cloning, expression, purification and in vitro refolding of Bacillus phytase enzyme from the transformed E. coli have been developed. The novel phytase, with broad pH and temperature range, renaturation ability and substrate specificity, appears promising as an ideal feed supplement. Identification of site between 179th amino acid leucine and 180th amino acid asparagine offers scope for insertion of small peptides/domains for production of chimeric genes without altering enzyme activity.
机译:目的:从芽孢杆菌中分离,克隆并表达一个新的植酸酶基因(phy)。在大肠杆菌中;从包涵体中回收活性酶;并表征重组植酸酶。方法与结果:在SDS-聚丙烯酰胺凝胶电泳中,植酸酶的分子量估计为40 kDa。发现Ca(2+)离子对酶的重折叠和活性都至关重要。芽孢杆菌肌醇六磷酸酶具有16 U mg(-1)蛋白的比活性;它还显示了广泛的pH和温度范围,分别为5.0至8.0和25至70摄氏度。已测定了肌醇六磷酸钠水解肌醇六磷酸钠的K(m)值为0.392 mmol l(-1)。 EDTA抑制了酶的活性。暴露于75至95摄氏度的高温下,该酶表现出足够的热稳定性。在生物反应器中培养转化的大肠杆菌9小时后,细胞生物量达到每升26.81 g湿重(ww),占4289 U的酶活性与摇瓶培养物中每升1.978 g ww产生256 U活性相比。在计算机分析中揭示了植酸酶的β-螺旋结构。结论:这是从转化的大肠杆菌中形成的包涵体中纯化芽孢杆菌肌醇六磷酸酶并在体外成功重折叠的同类报道。研究的意义和影响:已经开发了从转化的大肠杆菌克隆,表达,纯化和体外重折叠芽孢杆菌肌醇六磷酸酶的有效且可重复的方案。新型植酸酶具有广泛的pH和温度范围,复性能力和底物特异性,因此有望作为理想的饲料添加剂。鉴定第179个氨基酸亮氨酸和第180个氨基酸天冬酰胺之间的位点提供了插入小的肽/结构域的空间,以产生嵌合基因而不改变酶的活性。

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