不动杆菌K5b4胞外耐甲醇乙醇脂肪酶的筛选与优化

K. Khleifat
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引用次数: 11

摘要

从烃类残留物污染的土壤样品中分离到一株胞外耐甲醇和乙醇脂肪酶产菌K5b4,并进一步鉴定为不动杆菌属。固定化的不动杆菌K5b4脂肪酶经纯甲醇和乙醇孵育24小时后,剩余活性保持在98%以上。固定化酶在75% (v/v)甲醇溶液中水解活性最高。相反,当乙醇浓度为25% (v/v)时,酶的活性保持不变,而当乙醇浓度为50%和75% (v/v)时,酶的活性分别降低了10%和40%。以pH 7.0为最佳培养基(含1.0% (w/v)橄榄油、0.2% (w/v)甘油、0.15% (w/v)酵母浸膏、0.05% (w/v) NaCl,接种0.4% (v/v)种子培养液,在30℃、150 rpm搅拌条件下培养48小时,脂肪酶活性最高,为31.5 mU/mL。然而,与对照实验相比,生长培养基中CaCl2的存在对酶的产生没有任何抑制或刺激作用。同时,其他矿物盐MgCl2、MnCl2、KCl和CoCl2对脂肪酶酶的产生有负向影响。葡萄糖存在时,不动杆菌K5b4的脂肪酶产生受到抑制,这表明脂肪酶基因的表达容易受到分解代谢抑制。通讯作者:Muhamad O. Allimoun, muhamadodeh@gmail.com
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Screening selection and optimization of extracellular methanol and ethanol tolerant lipase from Acinetobacter sp. K5b4
An extracellular methanol and ethanol tolerant lipase producing bacterial strain K5b4 was isolated from soil samples contaminated with hydrocarbon residues, and further identified as Acinetobacter species. The immobilized lipase from Acinetobacter sp. K5b4 retained more than 98% of its residual activity after incubation with pure methanol and ethanol for 24 hours. The highest hydrolytic activity of the immobilized enzyme was obtained in the presence of 75% (v/v) methanol in the assay solution. In contrary, the enzyme was able to maintain its original activity up to only 25% (v/v) ethanol meanwhile, at elevated concentrations of 50 and 75% (v/v) the enzyme activity were reduced by 10 and 40% respectively. Maximum lipase activity of 31.5 mU/mL was achieved after 48 hr cultivation when the optimized medium (pH 7.0) that composed of 1.0% (w/v) olive oil, 0.2% (w/v) glycerol, 0.15% (w/v) yeast extract, and 0.05% (w/v) NaCl was inoculated with 0.4% (v/v) seed culture and incubated at 30°C and 150 rpm agitation speed. However, the presence of CaCl2 in the growth media did not show any inhibitory or stimulatory effect on the enzyme production as it compared to the control experiment. Meanwhile, the other mineral salts MgCl2, MnCl2, KCl and CoCl2 were negatively affected the production of lipase enzyme. The inhibition of lipase production from Acinetobacter sp. K5b4 in presence of glucose suggesting that lipase gene expression is prone to catabolic repression. * Corresponding Author:Muhamad O. Allimoun muhamadodeh@gmail.com
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