Kumar Vinod, Sangwan Punesh, Verma A K, Agrawal Sanjeev
Department of Biochemistry, College of Basic Sciences and Humanities, G. B. Pant University of Agriculture and Technology, Pantnagar, India, 263145.
Appl Biochem Biotechnol. 2014 May;173(2):646-59. doi: 10.1007/s12010-014-0871-9. Epub 2014 Apr 1.
Phytic acid is the major storage form of organic phosphorus in nature- and plant-based animal feed. It forms insoluble complexes with nutritionally important metals and proteins that are unavailable for monogastric or agastric animals. Phytases initiate the stepwise hydrolysis of phytic acid and release inorganic orthophosphate. In the present investigation, the phytase gene from a phytase producing Bacillus licheniformis strain PB-13 was successfully expressed in Escherichia coli BL21. Recombinant phytase 'rPhyPB13' was found to be catalytically active, with an activity of 0.97 U/mL and specific activity of 0.77 U/mg. The rPhyPB13 was purified to 14.10-fold using affinity chromatography. Similar to other β-propeller phytases, purified rPhyPB13 exhibited maximal activity at pH 6.0-6.5 and 60 °C in the presence of 1 mM Ca(2+) and was highly active over a wider pH range (pH 4.0-8.0) and high temperature (80 °C). It has shown maximum activity towards Na-phytate as substrate. The observed K m , V max and k cat of purified rPhyPB13 were 1.064 mM, 1.32 μmol/min/mg and 27.46 s(-1), respectively. PhyPB13 was resistant to trypsin inactivation, activated in presence of Ca(2+) and inhibited in presence of EDTA. Crude rPhyPB13 has good digestion efficiency for commercial feed and soybean meal. These results indicate that PhyPB13 is a β-propeller phytase that has application potential in aquaculture feed.
植酸是自然界和植物性动物饲料中有机磷的主要储存形式。它与营养重要的金属和蛋白质形成不溶性复合物,单胃或无胃动物无法利用这些金属和蛋白质。植酸酶启动植酸的逐步水解并释放无机正磷酸盐。在本研究中,来自产植酸酶的地衣芽孢杆菌菌株PB-13的植酸酶基因在大肠杆菌BL21中成功表达。发现重组植酸酶“rPhyPB13”具有催化活性,活性为0.97 U/mL,比活性为0.77 U/mg。使用亲和色谱法将rPhyPB13纯化至14.10倍。与其他β-螺旋桨植酸酶类似,纯化的rPhyPB13在1 mM Ca(2+)存在下于pH 6.0 - 6.5和60°C时表现出最大活性,并且在更宽的pH范围(pH 4.0 - 8.0)和高温(80°C)下具有高活性。它对肌醇六磷酸钠作为底物表现出最大活性。纯化的rPhyPB13的观察到的K m、V max和k cat分别为1.064 mM、1.32 μmol/min/mg和27.46 s(-1)。PhyPB13对胰蛋白酶失活具有抗性,在Ca(2+)存在下被激活,在EDTA存在下被抑制。粗制的rPhyPB13对商业饲料和豆粕具有良好的消化效率。这些结果表明PhyPB13是一种β-螺旋桨植酸酶,在水产养殖饲料中具有应用潜力。