Blazic Marija, Kovacevic Gordana, Prodanovic Olivera, Ostafe Raluca, Gavrovic-Jankulovic Marija, Fischer Rainer, Prodanovic Radivoje
Center for Chemistry IHTM, University of Belgrade, Njegoševa 12, 11001 Belgrade, Serbia.
Protein Expr Purif. 2013 Jun;89(2):175-80. doi: 10.1016/j.pep.2013.03.014. Epub 2013 Apr 3.
Glucose oxidase (GOx) catalyzes the oxidation of glucose to form gluconic acid and hydrogen peroxide, a reaction with important applications in food preservation, the manufacture of cosmetics and pharmaceuticals, and the development of glucose monitoring devices and biofuel cells. We expressed Aspergillus niger wild type GOx and the B11 mutant, which has twice the activity of the wild type enzyme at pH 5.5, as C-terminal fusions with the Saccharomyces cerevisiae Aga2 protein, allowing the fusion proteins to be displayed on the surface of yeast EBY100 cells. After expression, we extracted the proteins from the yeast cell wall and purified them by ion-exchange chromatography and ultrafiltration. This produced a broad 100-140kDa band by denaturing SDS-PAGE and a high-molecular-weight band by native PAGE corresponding to the activity band revealed by zymography. The wild type and B11 fusion proteins had kcat values of 33.3 and 61.3s(-1) and Km values for glucose of 33.4 and 27.9mM, respectively. The pH optimum for both enzymes was 5.0. The kinetic properties of the fusion proteins displayed the same ratio as their native counterparts, confirming that yeast surface display is suitable for the high-throughput directed evolution of GOx using flow cytometry for selection. Aga2-GOx fusion proteins in the yeast cell wall could also be used as immobilized catalysts for the production of gluconic acid.
葡萄糖氧化酶(GOx)催化葡萄糖氧化形成葡萄糖酸和过氧化氢,该反应在食品保鲜、化妆品和药品制造以及葡萄糖监测设备和生物燃料电池的开发中具有重要应用。我们将黑曲霉野生型GOx和B11突变体(在pH 5.5时其活性是野生型酶的两倍)作为与酿酒酵母Aga2蛋白的C端融合蛋白进行表达,使融合蛋白展示在酵母EBY100细胞表面。表达后,我们从酵母细胞壁中提取蛋白质,并通过离子交换色谱和超滤进行纯化。变性SDS-PAGE产生了一条宽的100 - 140kDa条带,天然PAGE产生了一条高分子量条带,与酶谱法显示的活性条带相对应。野生型和B11融合蛋白的kcat值分别为33.3和61.3s(-1),葡萄糖的Km值分别为33.4和27.9mM。两种酶的最适pH均为5.0。融合蛋白的动力学特性与其天然对应物显示出相同的比例,证实酵母表面展示适用于使用流式细胞术进行筛选的GOx高通量定向进化。酵母细胞壁中的Aga2-GOx融合蛋白也可用作生产葡萄糖酸的固定化催化剂。