Yu Dahai, Margesin Rosa
Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, College of Life Science, Jilin University, 2699 Qianjin Street, Changchun, 130012, People's Republic of China.
Folia Microbiol (Praha). 2014 Sep;59(5):439-45. doi: 10.1007/s12223-014-0318-2. Epub 2014 Apr 25.
Cold-active lipase production by the psychrophilic strain Rhodococcus cercidiphylli BZ22 isolated from hydrocarbon-contaminated alpine soil was investigated. Depending on the medium composition, high cell densities were observed at a temperature range of 1-10 °C in Luria-Bertani (LB) broth or 1-30 °C in Reasoner's 2A (R2A). Maximum enzyme production was achieved at a cultivation temperature of 1-10 °C in LB medium. About 70-80% of the secreted enzyme was bound to the cell and was highly active as a cell-immobilized lipase which exhibited good reusability; more than 60% of the initial lipase activity was retained after five-fold reuse. The properties of the lipase produced by the investigated strain were compared with those of a mesophilic porcine pancreatic lipase (PPL). The thermal stability of the cell-immobilized bacterial lipase was higher than that of the extracellular enzyme. Highest activity was detected at 30 °C for the cell-immobilized enzyme and for PPL, while the extracellular enzyme displayed highest activity at 10-20 °C. The bacterial lipase hydrolyzed p-nitrophenyl (p-NP) esters with different acyl chain lengths (C2-C18). The highest hydrolytic activity was obtained with p-NP-butyrate (C4) as substrate, while the highest substrate affinity was obtained with p-NP-dodecanoate (C12) as substrate, indicating a clear preference of the enzyme for medium acyl chain lengths.
对从受烃污染的高山土壤中分离出的嗜冷菌株紫荆叶红球菌BZ22产低温活性脂肪酶进行了研究。根据培养基组成,在Luria-Bertani(LB)肉汤中1-10°C的温度范围内或在Reasoner's 2A(R2A)中1-30°C的温度范围内观察到高细胞密度。在LB培养基中1-10°C的培养温度下实现了最大酶产量。约70-80%的分泌酶与细胞结合,作为细胞固定化脂肪酶具有高活性,表现出良好的可重复使用性;五次重复使用后保留了超过60%的初始脂肪酶活性。将所研究菌株产生的脂肪酶的性质与嗜温猪胰脂肪酶(PPL)的性质进行了比较。细胞固定化细菌脂肪酶的热稳定性高于细胞外酶。细胞固定化酶和PPL在30°C时检测到最高活性,而细胞外酶在10-20°C时表现出最高活性。该细菌脂肪酶水解具有不同酰基链长度(C2-C18)的对硝基苯基(p-NP)酯。以对硝基苯基丁酸酯(C4)为底物时获得最高水解活性,以对硝基苯基十二烷酸酯(C12)为底物时获得最高底物亲和力,表明该酶明显偏好中等酰基链长度。