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Engineered phytases for emerging biotechnological applications beyond animal feeding

机译:用于新兴生物技术应用的工程化植物酶超越动物饲养

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摘要

Phytases are important industrial enzymes able to catalyze the release of up to six phosphates from phytate in a stepwise hydrolysis reaction. Phytases are almost exclusively used as a feed supplement. However, phytases are also used in human nutrition, food processing, non-food industrial products, and emerging applications like enzymatic phosphate recovery from renewable resources. Phytate, the main phosphorus storage form in seeds, and its hydrolysis products act as a chelator and reduce protein and mineral bioavailability in intestinal absorption. Full phosphate hydrolysis from the common storage compound phytate remains a challenge. Phytate hydrolysis patterns of tailored phytases and their protein engineering campaigns are discussed. The aim of our review is to give an overview on developed and emerging application areas (animal nutrition, food processing, and environmental resource management) and thereby generate an awareness for the importance of phosphorus stewardship in a circular bioeconomy. Emphasis will be given to processes using organic-bound phosphorus and related recycling strategy of this valuable resource. In detail, the main challenge in designing phytases to completely hydrolyze phosphate from phytate to inositol and the need for engineering campaigns to broaden their industrial use are described.
机译:植酸酶是能够在逐步水解反应中催化从植物中释放多达六种磷酸盐的重要工业酶。植合酶几乎完全用作饲料补充剂。然而,植物酶也用于人类营养,食品加工,非食品工业产品,以及从可再生资源的酶促磷酸盐回收等新兴应用。植物,种子中的主要磷储存形式及其水解产物作为螯合剂并降低肠道吸收中的蛋白质和矿物生物利用度。来自普通储存复合植物的全磷酸盐水解仍然是挑战。讨论了量身定制的植物酶的植物水解模式及其蛋白质工程竞选活动。我们的审查的目的是概述发达和新兴的应用领域(动物营养,食品加工和环境资源管理),从而为循环生物经济体中的磷管家的重要性引起了认识。强调使用有机粘性的磷和相关的资源相关回收策略来赋予流程。详细地,描述了植物酶以将磷酸盐从植物中完全水解为肌醇的主要挑战以及对工程运动来扩大其工业用途的需求。

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