Cloning and High-Level Expression of the Enzymatic Region of Phytase in E. coli

被引:0
作者
Malihe Hallaji
Maryam Parhamfar
Ehsan Raoufi
Hamid Abtahi
机构
[1] Arak University of Medical Sciences,Department of Medical Biotechnology, Faculty of Medicine
[2] Arak University of Medical Sciences,Molecular and Medicine Research Center
[3] Iran University of Medical Sciences,Department of Medical Biotechnology, School of Allied Medicine
来源
International Journal of Peptide Research and Therapeutics | 2019年 / 25卷
关键词
Phytase; Enzymatic region; Recombinant protein expression; Thermostability; Activity;
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中图分类号
学科分类号
摘要
Phytase is an important enzyme poses great nutritional significance in humans and monogastric animals diets. The phytase production yield using wild sources, including micro-organisms, plants, and animals is sorely low. Thus, recombinant expression of phytase has received increasing interest for achieving production rate. Escherichia coli is the most preferred host for expression of heterologous proteins but overexpression of recombinant phytase in E. coli, met with limited success due to the sequestration of the enzyme into inclusion bodies. In the present study, artificial phytases gene with excellent thermostability and activity were designed by detecting the enzymatic region of the E. coli phytase gene by employing bioinformatics tools. Then, the PCR amplified recombinant gene was expressed in E. coli and the active enzyme was recovered from inclusion bodies. Employing cysteine amino acid in the dialysis buffer succeed to the superior activity of the enzyme with a specific activity of 73.8 U/mg. The optimum temperature and pH for enzyme activity were determined at 60 °C and 4, respectively. The novel recombinant enzyme illustrated perfect thermostability up to 70 °C with maintenance 75% of its activity. The enzyme was stable at pH range of 2–10. Moreover, the effects of ions and chemical compounds on enzyme stability and activity were assessed.
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页码:1431 / 1439
页数:8
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  • [1] Abbasian SS(2015)Overexpression and enzymatic assessment of antigenic fragments of hyaluronidase recombinant protein from streptococcus pyogenes Jundishapur J Microbiol 8 e13653-88
  • [2] Ghaznavi Rad E(2014)Expression, purification and biochemical characterization of recombinant phosphohydrolase appa in Eurasian J Appl Biotechnol 8 e27553-110
  • [3] Akbari N(2015)Optimization of recombinant expression of synthetic bacterial phytase in Jundishapur J Microbiol 21 81-200
  • [4] Zolfaghari MR(2014) using response surface methodology Saudi J Biol Sci 3 103-163
  • [5] Abtahi H(2011)Optimization of phytase production by Penicillium purpurogenum GE1 under solid state fermentation by using Box–Behnken design Adv Stud Biol 41 192-236
  • [6] Abeldenov S(2009)Molecular analysis of phytase gene cloned from Soil Biol Biochem 9 157-793
  • [7] Kirillov S(1998)Measurement of phytase activity in soil using a chromophoric tethered phytic acid probe Curr Opin Biotechnol 309 217-2967
  • [8] Nurmagambetova A(1999)Refolding of recombinant proteins Methods Enzymol 6 e18829-567
  • [9] Kiribayeva A(2011)[15] Inhibition of aggregation side reactions during in vitro protein folding PLoS ONE 40 789-6
  • [10] Silayev D(2005)Identification of a phytase gene in barley ( Process Biochem 12 2957-378