Das Arijit, Shivakumar Srividya, Bhattacharya Sourav, Shakya Sujina, Swathi S S
Department of Microbiology, Center for Post Graduate Studies, Jain University, 18/3, 9th Main, Jayanagar, 3rd Block, Bangalore, 560011, Karnataka, India.
3 Biotech. 2016 Dec;6(2):131. doi: 10.1007/s13205-016-0449-z. Epub 2016 Jun 10.
An extracellular lipase with 23,666.66 U/ml/min activity was produced by Aspergillus tamarii JGIF06 under submerged fermentation in mineral salt medium containing coconut oil (2.5 % v/v), tryptone (2 % w/v) and ammonium chloride (2 % w/v), with initial pH of 5 ± 0.2, incubated at 25 °C for 7 days on a rotary shaker at 120 rpm. A 7.9-fold increase in lipase-specific activity was recorded after purification by DEAE Sepharose ion exchange and Sephadex G200 column chromatography. The apparent molecular mass of this enzyme was revealed as 50 kDa by sodium dodecyl sulphate polyacrylamide gel electrophoresis. The optimal lipase activity was recorded at pH 4 and 37 °C. The enzyme revealed broad specificity towards different vegetable oils. The K and V of the lipase on olive oil was found to be 330.4 mg and 53,690 U/ml/min, respectively. The lipase activity was stable in the presence of surfactants such as cetrimonium bromide, sodium dodecyl sulphate and Tween 80, and metal ions and reagents such as Ca, Ba and 2-mercaptoethanol. However, the activity was greatly reduced in the presence of organic solvents such as chloroform. The stain removal potential of the crude lipase was determined on polycotton fabric pieces stained with peanut oil. Lipase added to cold water alone significantly enhanced the removal of stain by 152 %. The addition of lipase also improved the stain removal efficiency of a commercially available detergent in the presence of either cold (25 ± 2 °C) or hot (65 ± 2 °C) water. The current findings suggest the potentiality of this enzyme for energy-efficient biocatalytic application.
塔玛曲霉JGIF06在含有椰子油(2.5% v/v)、胰蛋白胨(2% w/v)和氯化铵(2% w/v)的矿物盐培养基中进行深层发酵,初始pH为5±0.2,于25℃在转速为120 rpm的旋转摇床上培养7天,产生了一种活性为23,666.66 U/ml/min的胞外脂肪酶。经DEAE琼脂糖离子交换和葡聚糖G200柱层析纯化后,脂肪酶的比活性提高了7.9倍。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳显示该酶的表观分子量为50 kDa。脂肪酶的最佳活性在pH 4和37℃时测得。该酶对不同植物油具有广泛的特异性。发现该脂肪酶对橄榄油的Km和Vmax分别为330.4 mg和53,690 U/ml/min。脂肪酶活性在诸如十六烷基三甲基溴化铵、十二烷基硫酸钠和吐温80等表面活性剂以及钙、钡和2-巯基乙醇等金属离子和试剂存在下稳定。然而,在氯仿等有机溶剂存在下活性大大降低。在被花生油污染的涤棉织物片上测定了粗脂肪酶的去污潜力。单独添加到冷水中的脂肪酶显著提高去污率达152%。在冷水(25±2℃)或热水(65±2℃)存在下,添加脂肪酶也提高了市售洗涤剂的去污效率。目前的研究结果表明该酶在节能生物催化应用方面具有潜力。