New Lipase for Biodiesel Production: Partial Purification and Characterization of LipSB 25-4.

ISRN biochemistry Pub Date : 2014-03-10 eCollection Date: 2014-01-01 DOI:10.1155/2014/289749
Aysel Ugur, Nurdan Sarac, Rukiye Boran, Berk Ayaz, Ozgur Ceylan, Gulten Okmen
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引用次数: 38

Abstract

The lipolytic activities of 300 Streptomyces isolates were determined in Tributyrin and Rhodamine-B Agar. Lipase activities were also measured with p-nitrophenyl palmitate (p-NPP) as a substrate. The strain of Streptomyces bambergiensis OC 25-4 used in this study was selected among 300 strains of Streptomyces from MUCC as the best lipase producer. The incubation conditions were optimized and the inoculum amount, incubation period, effect of carbon and nitrogen sources, and rates of MgSO4 and CaCO3 were investigated. LipSB 25-4 (the lipase produced by S. bambergiensis OC 25-4 strain) was partially purified with ammonium sulphate precipitation, dialysis, and gel filtration chromatography 2.73-fold and with 92.12 U/mg specific activity. The optimal pH and temperature for LipSB 25-4 were determined as 8.0 and 50°C, respectively. The lipase has high stability in all pH and temperature values used in this study. While LipSB 25-4 was slightly activated in the presence of β-mercaptoethanol, it was slightly reduced by PMSF. The enzyme conserved approximately 75% of its activity at the end of 60 h, in the presence of methanol and ethanol. Since LipSB 25-4 displays high activity in the thermophilic conditions and stability in the presence of organic solvents, this lipase can catalyse the biodiesel production from olive oil by the transesterification reactions.

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用于生物柴油生产的新型脂肪酶:LipSB 25-4的部分纯化与表征
测定了300株链霉菌在甘油三酯和罗丹明- b琼脂中的溶脂活性。以对硝基苯棕榈酸酯(p-NPP)为底物,测定脂肪酶活性。本研究选用的班贝格链霉菌OC 25-4在300株MUCC链霉菌中被选为最佳脂肪酶产生菌。优化了培养条件,考察了接种量、培养时间、碳源和氮源的影响以及MgSO4和CaCO3的速率。通过硫酸铵沉淀、透析、凝胶过滤层析等方法,对bambergiensis OC 25-4菌株产生的脂肪酶LipSB 25-4进行了2.73倍的部分纯化,比活性为92.12 U/mg。LipSB 25-4的最佳pH和温度分别为8.0℃和50℃。该脂肪酶在本研究使用的所有pH值和温度值下都具有很高的稳定性。虽然LipSB 25-4在β-巯基乙醇存在下被轻微激活,但PMSF使其被轻微降低。在甲醇和乙醇存在的情况下,酶在60 h结束时保持了大约75%的活性。由于LipSB 25-4在嗜热条件下表现出较高的活性,并且在有机溶剂存在下表现出稳定性,因此该脂肪酶可以通过酯交换反应催化橄榄油生产生物柴油。
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Analysis of mathematical modelling on potentiometric biosensors. Tumor microenvironment: a new treatment target for cancer. New Lipase for Biodiesel Production: Partial Purification and Characterization of LipSB 25-4. Synthetic melatoninergic ligands: achievements and prospects. Kinetic Characterization and Effect of Immobilized Thermostable β-Glucosidase in Alginate Gel Beads on Sugarcane Juice.
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