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棘孢木霉来源的重组甾醇酯酶:在巴斯德毕赤酵母中表达的改良生物催化剂。

Recombinant sterol esterase from Ophiostoma piceae: an improved biocatalyst expressed in Pichia pastoris.

机构信息

Centro de Investigaciones Biológicas (CIB), Spanish National Research Council (CSIC), Ramiro de Maeztu 9, Madrid 28040, Spain.

出版信息

Microb Cell Fact. 2012 Jun 7;11:73. doi: 10.1186/1475-2859-11-73.

Abstract

BACKGROUND

The ascomycete Ophiostoma piceae produces a sterol esterase (OPE) with high affinity towards p-nitrophenol, glycerol and sterol esters. Its hydrolytic activity on natural mixtures of triglycerides and sterol esters has been proposed for pitch biocontrol in paper industry since these compounds produce important economic losses during paper pulp manufacture.

RESULTS

Recently, this enzyme has been heterologously expressed in the methylotrophic yeast Pichia pastoris, and the hydrolytic activity of the recombinant protein (OPE*) studied. After the initial screening of different clones expressing the enzyme, only one was selected for showing the highest production rate. Different culture conditions were tested to improve the expression of the recombinant enzyme. Complex media were better than minimal media for production, but in any case the levels of enzymatic activity were higher (7-fold in the best case) than those obtained from O. piceae. The purified enzyme had a molecular mass of 76 kDa, higher than that reported for the native enzyme under SDS-PAGE (60 kDa). Steady-state kinetic characterization of the recombinant protein showed improved catalytic efficiency for this enzyme as compared to the native one, for all the assayed substrates (p-nitrophenol, glycerol, and cholesterol esters). Different causes for this were studied, as the increased glycosylation degree of the recombinant enzyme, their secondary structures or the oxidation of methionine residues. However, none of these could explain the improvements found in the recombinant protein. N-terminal sequencing of OPE* showed that two populations of this enzyme were expressed, having either 6 or 8 amino acid residues more than the native one. This fact affected the aggregation behaviour of the recombinant protein, as was corroborated by analytical ultracentrifugation, thus improving the catalytic efficiency of this enzyme.

CONCLUSION

P. pastoris resulted to be an optimum biofactory for the heterologous production of recombinant sterol esterase from O. piceae, yielding higher activity levels than those obtained with the saprophytic fungus. The enzyme showed improved kinetic parameters because of its modified N-terminus, which allowed changes in its aggregation behaviour, suggesting that its hydrophobicity has been modified.

摘要

背景

子囊菌奥氏蜜环菌产生一种甾醇酯酶(OPE),对 p-硝基苯酚、甘油和甾醇酯具有高亲和力。由于这些化合物在纸浆制造过程中会产生重要的经济损失,因此其对甘油三酯和甾醇酯天然混合物的水解活性被提议用于控制造纸工业中的树脂病。

结果

最近,该酶已在甲醇营养酵母毕赤酵母中异源表达,并对重组蛋白(OPE*)的水解活性进行了研究。在对表达该酶的不同克隆进行初步筛选后,仅选择了一个克隆来获得最高的产率。测试了不同的培养条件来提高重组酶的表达。与最小培养基相比,复杂培养基更有利于产物生成,但无论如何,酶活水平都高于奥氏蜜环菌中获得的水平(最佳情况下提高了 7 倍)。纯化后的酶的分子量为 76 kDa,高于 SDS-PAGE 下报道的天然酶(60 kDa)。重组蛋白的稳态动力学特性研究表明,与天然酶相比,该酶对所有检测到的底物(p-硝基苯酚、甘油和胆固醇酯)的催化效率都有所提高。研究了导致这种情况的不同原因,如重组酶的糖基化程度增加、二级结构或蛋氨酸残基的氧化。然而,这些都不能解释在重组蛋白中发现的改进。OPE*的 N 端测序表明,该酶有两种表达形式,比天然酶多 6 或 8 个氨基酸残基。这一事实影响了重组蛋白的聚集行为,这一点通过分析超速离心得到了证实,从而提高了该酶的催化效率。

结论

毕赤酵母是奥氏蜜环菌重组甾醇酯酶异源生产的理想生物工厂,其酶活水平高于腐生真菌获得的水平。由于其 N 端的修饰,该酶显示出改进的动力学参数,这允许其聚集行为发生变化,表明其疏水性发生了变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a9d/3514274/6b53a2dddc19/1475-2859-11-73-1.jpg

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