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首页> 外文期刊>Applied Microbiology and Biotechnology >Simple and efficient expression of Agaricus meleagris pyranose dehydrogenase in Pichia pastoris
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Simple and efficient expression of Agaricus meleagris pyranose dehydrogenase in Pichia pastoris

机译:姬松茸吡喃糖脱氢酶在巴斯德毕赤酵母中的简单有效表达

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摘要

Pyranose dehydrogenase (PDH) is a fungal flavin-dependent sugar oxidoreductase that is highly interesting for applications in organic synthesis or electrochemistry. The low expression levels of the filamentous fungus Agaricus meleagris as well as the demand for engineered PDH make heterologous expression necessary. Recently, Aspergillus species were described to efficiently secrete recombinant PDH. Here, we evaluate recombinant protein production with expression hosts more suitable for genetic engineering. Expression in Escherichia coli resulted in no soluble or active PDH. Heterologous expression in the methylotrophic yeast Pichia pastoris was investigated using two different signal sequences as well as a codon-optimized sequence. A 96-well plate activity screening for transformants of all constructs was established and the best expressing clone was used for large-scale production in 50-L scale, which gave a volumetric yield of 223 mg L ~(-1) PDH or 1,330 UL ~(-1) d ~(-1) in space-time yield. Purification yielded 13.4 g of pure enzyme representing 95.8% of the initial activity. The hyperglycosylated recombinant enzyme had a 20% lower specific activity than the native enzyme; however, the kinetic properties were essentially identical. This study demonstrates the successful expression of PDH in the eukaryotic host organism P. pastoris paving the way for protein engineering. Additionally, the feasibility of large-scale production of the enzyme with this expression system together with a simplified purification scheme for easy high-yield purification is shown.
机译:吡喃糖脱氢酶(PDH)是一种真菌黄素依赖性糖氧化还原酶,在有机合成或电化学中的应用非常受关注。丝状真菌姬松茸的低表达水平以及对工程化PDH的需求使得异源表达成为必要。最近,描述了曲霉菌种能有效地分泌重组PDH。在这里,我们评估与更适合基因工程的表达宿主的重组蛋白生产。在大肠杆菌中表达不会产生可溶性或活性的PDH。使用两个不同的信号序列以及密码子优化序列研究了甲基营养酵母巴斯德毕赤酵母中的异源表达。建立了针对所有构建体转化子的96孔板活性筛选,并使用表达最佳的克隆以50-L规模进行大规模生产,其产量为223 mg L〜(-1)PDH或1,330 UL时空产量的〜(-1)d〜(-1)。纯化得到13.4g纯酶,占初始活性的95.8%。高糖基化重组酶的比活性比天然酶低20%。然而,动力学性质基本相同。这项研究证明了PDH在真核宿主生物巴斯德毕赤酵母中的成功表达为蛋白质工程铺平了道路。另外,显示了用该表达系统大规模生产酶的可行性以及简化的纯化方案以易于高产率纯化的可行性。

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