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Construction of a Super-Folder Fluorescent Protein-Guided Secretory Expression System for the Production of Phospholipase D in Bacillus subtilis

机译:枯草芽孢杆菌生产磷脂酶D的超折叠荧光蛋白引导分泌表达系统的构建

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Phospholipids (PLs) are one of the main ingredients in food and nutraceutical, cosmetics, agriculture, and pharmaceutical products. Phospholipase D (PLD) is a crucial enzyme for the biocatalytic synthesis or modification of PLs. Here, to prepare PLD more efficiently, we constructed a PLD expression and secretion system in Bacillus subtilis and developed an environmentally friendly reaction system. A nonclassical secretory pathway where a super-folder green fluorescent protein plays as an N-terminal guide protein was introduced. This expression system can not only achieve rapid screening of high-level expression strains but can also achieve the secretion of the target proteins. Under optimal fermentation conditions, the enzyme activity of the culture medium was 0.35 U/mL, which was 2.05-fold that of the Sec secretion pathway strains. Meanwhile, the effects of several organic solvents in the biphasic reaction media were compared. The results showed that when using cyclopentyl methyl ether as the organic phase, the final conversion rate reached 96.9%. It has shown good application potential in the synthesis of phosphatidylserine, laid the foundation for the synthesis and application of other rare and high-value PLs, and provided a reference for the production of other biocatalysts.
机译:磷脂(PLs)是食品和营养制剂、化妆品、农业和医药产品中的主要成分之一。磷脂酶D(PLD)是生物催化合成或修饰PLs的关键酶。在这里,为了更有效地制备PLD,我们在枯草芽孢杆菌中构建了PLD表达和分泌系统,并开发了环境友好的反应系统。介绍了一种非经典的分泌途径,其中一个超级文件夹绿色荧光蛋白作为N端引导蛋白发挥作用。该表达系统不仅可以实现高效表达菌株的快速筛选,还可以实现靶蛋白的分泌。在最佳发酵条件下,培养基的酶活性为0.35u/mL,是Sec分泌途径菌株的2.05倍。同时,比较了几种有机溶剂在两相反应介质中的作用。结果表明,以环戊基甲醚为有机相时,最终转化率达到96.9%。在合成磷脂酰丝氨酸中具有良好的应用潜力,为其它稀有高值PLS的合成和应用奠定了基础,为其它生物催化剂的生产提供了参考。

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