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Optimization of extracellular catalase production from Aspergillus phoenicis K30 by a linear regression method using date flour as single carbon source and purification of the enzyme

机译:通过使用枣粉作为单一碳源并纯化该酶的线性回归方法,优化了phoenicis K30产胞外过氧化氢酶

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Aspergillus phoenicis?K30 is the selected mutant which produces an amount of extracellular catalase. To amplify the extracellular catalase production by the strain, a fermentation optimization was performed. To select the factors affecting the production, nine active variables (factors) consisting of 12 experiments were analyzed by Plackett-Burman design. Each variable was tested at two levels, a higher and a lower level. The studies of the effect of each variable and the establishment of a correlation between the response of enzyme activity and variables revealed that the link is a multiple linear regression form. The optimization was carried out through a simplex algorithm. The amount of extracellular catalase produced by the strain in the optimized medium was about four times higher than that obtained in non optimized medium corresponding to 3820 mg/L of extracellular proteins including 59500 U/L of extracellular catalase activity after 96 h of fermentation. The steps of purification were allowed to improve enzyme activity by 305-fold. From an analytical gel electrophoresis under native conditions, an apparent molecular mass of 158 kDa was determined suggesting that the enzyme is a homodimer. The isoelectric point of the protein was found to be 5 ± 0.1 as determined by a Pharmacia Phast-system.
机译:phoenicis?K30曲霉是选择的突变体,它产生一定量的细胞外过氧化氢酶。为了扩增菌株的细胞外过氧化氢酶产生,进行了发酵优化。为了选择影响生产的因素,通过Plackett-Burman设计分析了由12个实验组成的9个活动变量(因素)。每个变量都在两个级别(较高和较低级别)上进行了测试。对每个变量的影响以及酶活性与变量之间相关性的建立的研究表明,该联系是多元线性回归形式。优化是通过单纯形算法进行的。该菌株在优化培养基中产生的细胞外过氧化氢酶的量约为在非优化培养基中获得的量的四倍,相当于在发酵96小时后3820 mg / L的细胞外蛋白质,包括59500 U / L的细胞外过氧化氢酶活性。使纯化步骤将酶活性提高305倍。通过在天然条件下的分析凝胶电泳,确定了158 kDa的表观分子量,表明该酶是同型二聚体。如通过Pharmacia Phast系统所测定,发现蛋白质的等电点为5±0.1。

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