Division of Biotechnology, The Catholic University of Korea, Bucheon 420-743, Korea.
J Microbiol Biotechnol. 2013 May;23(5):661-7. doi: 10.4014/jmb.1212.12040.
Lipase-producing bacterial strains were isolated from Antarctic soil samples using the tricaprylin agar plate method. Seven strains with relatively strong lipase activities were selected. All of them turned out to be Bacillus pumilus strains by the 16S rRNA gene sequence analysis. Their corresponding lipase genes were cloned, sequenced, and compared. Finally, three different Bacillus pumilus lipases (BPL1, BPL2, and BPL3) were chosen. Their amino acid sequence identities were in the range of 92-98% with the previous Bacillus pumilus lipases. Their optimum temperatures and pHs were measured to be 40 degrees C and pH 9. Lipase BPL1 and lipase BPL2 were stable up to 30 degrees C, whereas lipase BPL3 was stable up to 20 degrees C. Lipase BPL2 was stable within a pH range of 6-10, whereas lipase BPL1 and lipase BPL3 were stable within a pH range of 5-11, showing strong alkaline tolerance. All these lipases exhibited high hydrolytic activity toward pnitrophenyl caprylate (C8). In addition, lipase BPL1 showed high hydrolytic activity toward tributyrin, whereas lipase BPL2 and lipase BPL3 hydrolyzed tricaprylin and castor oil preferentially. These results demonstrated that the three Antarctic Bacillus lipases were alkaliphilic and had a substrate preference toward short- and mediumchain triglycerides. These Antarctic Bacillus lipases might be used in detergent and food industries.
采用三辛酸甘油酯琼脂平板法从南极土壤样品中分离产脂肪酶的细菌菌株。筛选出 7 株相对较强脂肪酶活性的菌株。通过 16S rRNA 基因序列分析,它们均被鉴定为解淀粉芽孢杆菌菌株。克隆、测序并比较了它们相应的脂肪酶基因。最终,选择了三种不同的解淀粉芽孢杆菌脂肪酶(BPL1、BPL2 和 BPL3)。它们的氨基酸序列同一性在 92-98%范围内与之前的解淀粉芽孢杆菌脂肪酶相似。测定了它们的最适温度和 pH 值,分别为 40°C 和 pH 9。脂肪酶 BPL1 和脂肪酶 BPL2 在 30°C 下稳定,而脂肪酶 BPL3 在 20°C 下稳定。脂肪酶 BPL2 在 pH 6-10 范围内稳定,而脂肪酶 BPL1 和脂肪酶 BPL3 在 pH 5-11 范围内稳定,表现出较强的耐碱性。所有这些脂肪酶对 p-硝基苯辛酸酯(C8)均表现出较高的水解活性。此外,脂肪酶 BPL1 对三丁酸甘油酯表现出较高的水解活性,而脂肪酶 BPL2 和脂肪酶 BPL3 优先水解三辛酸甘油酯和蓖麻油。这些结果表明,这三种南极解淀粉芽孢杆菌脂肪酶为嗜碱性,对短链和中链甘油三酯具有底物偏好性。这些南极解淀粉芽孢杆菌脂肪酶可能在洗涤剂和食品工业中得到应用。