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新型脂肪酶 Lip11 和 Lip12 与来自解脂耶氏酵母的 Lip2 的比较生化特性和计算机分析。

Comparative biochemical characterization and in silico analysis of novel lipases Lip11 and Lip12 with Lip2 from Yarrowia lipolytica.

机构信息

Department of Microbiology, University of Delhi, South Campus, New Delhi 110021, India.

出版信息

World J Microbiol Biotechnol. 2012 Nov;28(11):3103-11. doi: 10.1007/s11274-012-1120-4. Epub 2012 Aug 31.

Abstract

Novel lipases lip11 and lip12 from Yarrowia lipolytica MSR80 were cloned and expressed in E. coli HB101 pEZZ18 system along with lip2. These enzymes were constitutively expressed as extracellular proteins with IgG tag. The enzymes were purified by affinity chromatography and analyzed by SDS-PAGE with specific activity of 314, 352 and 198 U/mg for Lip2, Lip11 and Lip12, respectively on olive oil. Biochemical characterization showed that all were active over broad range of pH 4.0-9.0 and temperature 20-80 °C with optima at pH 7 and 40 °C. All the three lipases were thermostable up to 80 °C with varying t(½). Activity on various substrates revealed that they were most active on oils > triacylglycerides > p-np-esters. Relatively Lip2 and Lip11 showed specificity for mid to long chain fatty acids, while Lip12 was mid chain specific. GC analysis of triolein hydrolysis by these lipases revealed that Lip2 and Lip11 are regioselective, while Lip12 is not. Effect of metal ions showed that Lip2 and Lip12 were activated by Ca²⁺ whereas Lip11 by Mg²⁺. All were thiol activated and inhibited by PMSF and N-bromosuccinimide. All were activated by non polar solvents and inhibited by polar solvents. Detailed sequence analysis and structural predictions revealed Lip11 and Lip12 shared 61 and 62 % homology with Lip2 (3O0D) and three dimensional superimposition revealed Lip2 was closer to Lip11 than to Lip12 as was observed during biochemical characterization. Finally, thermostability and substrate specificity has been explained on the basis of detailed amino acid analysis.

摘要

新型脂肪酶 Lip11 和 Lip12 来自酿酒酵母 MSR80,与 Lip2 一起在大肠杆菌 HB101 pEZZ18 系统中被克隆和表达。这些酶作为带有 IgG 标签的细胞外蛋白组成型表达。通过亲和层析进行纯化,并通过 SDS-PAGE 进行分析,橄榄油上的比活分别为 Lip2、Lip11 和 Lip12 的 314、352 和 198 U/mg。生化特性表明,所有酶在 pH4.0-9.0 和温度 20-80°C 的宽范围内均具有活性,最适 pH 值为 7,最适温度为 40°C。三种脂肪酶在 80°C 以下均具有热稳定性,半衰期(t(½))不同。对各种底物的活性表明,它们在油>三酰基甘油>对硝基苯酚酯上最活跃。相对而言,Lip2 和 Lip11 对中长链脂肪酸具有特异性,而 Lip12 则是中链特异性的。这些脂肪酶水解三油酸甘油酯的 GC 分析表明,Lip2 和 Lip11 是区域选择性的,而 Lip12 则不是。金属离子的影响表明,Lip2 和 Lip12 被 Ca²⁺激活,而 Lip11 被 Mg²⁺激活。所有脂肪酶均被巯基激活,被 PMSF 和 N-溴代丁二酰亚胺抑制。所有脂肪酶均被非极性溶剂激活,被极性溶剂抑制。详细的序列分析和结构预测表明,Lip11 和 Lip12 与 Lip2(3O0D)的同源性分别为 61%和 62%,三维叠加表明,在生化特性观察中,Lip2 与 Lip11 的相似度高于与 Lip12 的相似度。最后,根据详细的氨基酸分析解释了热稳定性和底物特异性。

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