Rezaie Meysam, Aminzadeh Saeed, Heidari Farid, Mashhadi Akbar Boojar Masoud, Karkhane Ali Asghar
National Institute for Genetic Engineering and Biotechnology (NIGEB), Institute of Industrial and Environmental Biotechnology, Bioprocess Engineering Research Group, Shahrak-E-Pajoohesh km 15, Tehran-Karaj Highway, P. O. Box: 14965/161, Tehran, Iran.
Faculty of Biological Sciences, Kharazmi University, Tehran, Iran.
Iran Biomed J. 2018 Sep;22(5):345-54. doi: 10.29252/ibj.22.5.345. Epub 2018 Jan 13.
Typically, non-cellulytic glucanase, including fungi and yeast cell wall hydrolyzing enzymes, are released by some symbiotic fungi and plants during the mycoparasitic fungi attack on plants. These enzymes are known as the defense mechanisms of plants. This study intends to investigate the biochemical properties of β-1,6-glucanase (bg16M) from native thermophilic bacteria, Cohnella A01.
bg16M gene was cloned and expressed in E. coli BL21 (DE3). The enzyme was purified utilizing Ni-NTA nikcle sepharose column. Pustulan and laminarin were selected as substrates in enzyme assay. The purified bg16M enzyme was treated with different pH, temperature, metal ions, and detergents.
The expressed protein, including 639 amino acids, showed a high similarity with the hydrolytic glycosylated family 30. The molecular weight of enzyme was 64 kDa, and purification yield was 46%. The bg16M demonstrated activity as 4.83 U/ml on laminarin and 2.88 U/ml on pustulan. The optimum pH and temperature of the enzyme were 8 and 50 °C, respectively. The enzyme had an appropriate stability at high temperatures and in the pH range of 7 to 9, showing acceptable stability, while it did not lose enzymatic activity completely at acidic or basic pH. None of the studied metal ions and chemical compounds was the activator of bg16M, and urea, SDS, and copper acted as enzyme inhibitors.
Biochemical characterization of this enzyme revealed that bg16M can be applied in beverage industries and medical sectors because of its high activity, as well as thermal and alkaline stability.
通常,非纤维素葡聚糖酶,包括真菌和酵母细胞壁水解酶,是一些共生真菌和植物在真菌寄生菌攻击植物时释放的。这些酶被认为是植物的防御机制。本研究旨在研究嗜热细菌科奈氏菌属A01中β-1,6-葡聚糖酶(bg16M)的生化特性。
克隆bg16M基因并在大肠杆菌BL21(DE3)中表达。利用镍-亚氨基二乙酸琼脂糖凝胶柱纯化该酶。在酶活性测定中选择支链淀粉和海带多糖作为底物。用不同的pH值、温度、金属离子和去污剂处理纯化后的bg16M酶。
表达的蛋白质包含639个氨基酸,与水解糖基化家族30具有高度相似性。该酶的分子量为64 kDa,纯化产率为46%。bg16M对海带多糖的活性为4.83 U/ml,对支链淀粉的活性为2.88 U/ml。该酶的最佳pH值和温度分别为8和50℃。该酶在高温和pH值7至9范围内具有适当的稳定性,表现出可接受的稳定性,而在酸性或碱性pH值下它不会完全丧失酶活性。所研究的金属离子和化合物均不是bg16M的激活剂,尿素、十二烷基硫酸钠和铜起酶抑制剂的作用。
该酶的生化特性表明,由于bg16M具有高活性以及热稳定性和碱稳定性,它可应用于饮料工业和医疗领域。