Metin Kubilay, Burcu Bakir Ateslier Z, Basbulbul Gamze, Halil Biyik H
Department of Biology, Faculty of Science and Literature, Adnan Menderes University, 09010 Aydin, Turkey.
J Basic Microbiol. 2006;46(5):400-9. doi: 10.1002/jobm.200510121.
A thermophilic esterase producing bacterium (Bacillus sp. 4), recently isolated from Alangüllü thermal spring in Aydin (Turkey), was analyzed using 16S rRNA and classified as Geobacillus sp. HBB-4, most closely related to Bacillus sp. BGSC W9A59 (0.70% sequence divergence) which belongs to the newly described genus Geobacillus. The effects of several chemicals on the activity of thermostable esterase from Geobacillus sp. HBB-4 were examined. Among the various metal ions tested, esterase activity was enhanced by Mn(+2) and Ni(+2), but was inhibited by Hg(+2) and Cu(+2), whereas Ca(+2), Mg(+2) and Co(+2) had no effect. In addition, other metal ions studied have caused a slight inhibition on the esterase activity. EDTA partially inhibited the HBB-4 esterase. The activator metal ions, Mn(+2) and Ni(+2) have restored partial inhibition of EDTA. The activity of HBB-4 esterase was inhibited by ionic detergents while non-ionic detergents activated the enzyme. However, a zwitterionic detergent, CHAPS, has caused a slight inhibition in the enzyme activity. HBB-4 esterase activity was inhibited at the high concentrations of all the organic solvents tested in the present study. However, 50% final concentration of DMSO increased the enzyme activity about 7%. The HBB-4 esterase has shown more than about 50% of activity in the presence of ethanol and methanol solutions. These characteristics of the enzyme along with its significant thermostability make the Geobacillus sp. HBB-4 esterase a potent candidate for future industrial applications.
最近从土耳其艾登的阿兰古吕温泉中分离出一株嗜热产酯酶细菌(芽孢杆菌属4),利用16S rRNA进行分析,并归类为嗜热栖热菌属HBB-4,与芽孢杆菌属BGSC W9A59关系最为密切(序列差异为0.70%),芽孢杆菌属BGSC W9A59属于新描述的嗜热栖热菌属。研究了几种化学物质对嗜热栖热菌属HBB-4的耐热酯酶活性的影响。在所测试的各种金属离子中,酯酶活性被Mn(+2)和Ni(+2)增强,但被Hg(+2)和Cu(+2)抑制,而Ca(+2)、Mg(+2)和Co(+2)没有影响。此外,所研究的其他金属离子对酯酶活性有轻微抑制作用。EDTA部分抑制HBB-4酯酶。激活剂金属离子Mn(+2)和Ni(+2)恢复了EDTA的部分抑制作用。离子型去污剂抑制HBB-4酯酶的活性,而非离子型去污剂激活该酶。然而,两性离子去污剂CHAPS对酶活性有轻微抑制作用。在本研究中测试的所有有机溶剂的高浓度下,HBB-4酯酶活性均受到抑制。然而,50%终浓度的二甲基亚砜使酶活性提高了约7%。在乙醇和甲醇溶液存在下,HBB-4酯酶显示出超过约50%的活性。该酶的这些特性及其显著的热稳定性使嗜热栖热菌属HBB-4酯酶成为未来工业应用的有力候选者。