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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Cell Surface Display of Yarrowia lipolytica Lipase Lip2p Using the Cell Wall Protein YlPir1p, Its Characterization, and Application as a Whole-Cell Biocatalyst
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Cell Surface Display of Yarrowia lipolytica Lipase Lip2p Using the Cell Wall Protein YlPir1p, Its Characterization, and Application as a Whole-Cell Biocatalyst

机译:使用细胞壁蛋白YlPir1p的解脂耶氏酵母脂肪酶Lip2p的细胞表面展示,其表征和作为全细胞生物催化剂的应用

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The Yarrowia lipolytica lipase Lip2p was displayed on the yeast cell surface via N-terminal fusion variant using cell wall protein YlPir1p. The hydrolytic activity of the lipase displayed on Y. lipolytica cells reached 11,900 U/g of dry weight. However, leakage of enzyme from the cell wall was observed. The calculated number of recombinant enzyme displayed on the cell surface corresponds to approximately 6 x 10(5) molecules per cell, which is close to the theoretical maximum (2 x 10(6) molecules/cell). Furthermore, the leaking enzyme was presented as three N-glycosylated proteins, one of which corresponds to the whole hybrid protein. Thus, we attribute the enzyme leakage to the limited space available on the cell surface. Nevertheless, the surface-displayed lipase exhibited greater stability to short-term and long-term temperature treatment than the native enzyme. Cell-bound lipase retained 74 % of its original activity at 60 A degrees C for 5 min of incubation, and 83 % of original activity after incubation at 50 A degrees C during 5 h. Cell-bound lipase had also higher stability in organic solvents and detergents. The developed whole-cell biocatalyst was used for recycling biodiesel synthesis. Two repeated cycles of methanolysis yielded 84.1 and 71.0 % methyl esters after 33- and 45-h reactions, respectively.
机译:使用细胞壁蛋白Y1Pir1p,经由N-末端融合变体在酵母细胞表面展示解脂耶氏酵母脂肪酶Lip2p。在解脂耶氏酵母细胞上展示的脂肪酶的水解活性达到11,900 U / g干重。然而,观察到酶从细胞壁泄漏。显示在细胞表面的重组酶的计算数量相当于每个细胞大约6 x 10(5)分子,接近理论最大值(每个细胞2 x 10(6)分子)。此外,泄漏的酶以三种N-糖基化蛋白的形式出现,其中之一对应于整个杂合蛋白。因此,我们将酶泄漏归因于细胞表面上有限的空间。然而,与天然酶相比,表面展示的脂肪酶对短期和长期温度处理表现出更大的稳定性。细胞结合的脂肪酶在60 A的温度下孵育5分钟后保留其原始活性的74%,在50 A的温度下孵育5小时后保留其原始活性的83%。细胞结合的脂肪酶在有机溶剂和去污剂中也具有较高的稳定性。开发的全细胞生物催化剂用于回收生物柴油合成。在33和45小时的反应后,两个重复的甲醇分解循环分别产生84.1和71.0%的甲酯。

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