Yao Wentao, Liu Kaiquan, Liu Hongling, Jiang Yi, Wang Ruiming, Wang Wei, Wang Tengfei
State Key Laboratory of Biobased Material and Green Papermaking (LBMP), Qilu University of Technology (Shandong Academy of Sciences), Jinan, China.
Key Laboratory of Shandong Microbial Engineering, College of Bioengineering, QiLu University of Technology (Shandong Academy of Sciences), Jinan, China.
Front Microbiol. 2021 Sep 20;12:743377. doi: 10.3389/fmicb.2021.743377. eCollection 2021.
As a powerful factory, microbial cells produce a variety of enzymes, such as lipase. Lipase has a wide range of actions and participates in multiple reactions, and they can catalyze the hydrolysis of triacylglycerol into its component free fatty acids and glycerol backbone. Lipase exists widely in nature, most prominently in plants, animals and microorganisms, among which microorganisms are the most important source of lipase. Microbial lipases have been adapted for numerous industrial applications due to their substrate specificity, heterogeneous patterns of expression and versatility (i.e., capacity to catalyze reactions at the extremes of pH and temperature as well as in the presence of metal ions and organic solvents). Now they have been introduced into applications involving the production and processing of food, pharmaceutics, paper making, detergents, biodiesel fuels, and so on. In this mini-review, we will focus on the most up-to-date research on microbial lipases and their commercial and industrial applications. We will also discuss and predict future applications of these important technologies.
作为一个强大的“工厂”,微生物细胞能产生多种酶,如脂肪酶。脂肪酶具有广泛的作用,参与多种反应,它能催化三酰甘油水解成其组成成分游离脂肪酸和甘油主链。脂肪酶广泛存在于自然界,最显著地存在于植物、动物和微生物中,其中微生物是脂肪酶最重要的来源。由于微生物脂肪酶具有底物特异性、表达的异质性模式和多功能性(即在极端pH和温度以及存在金属离子和有机溶剂的情况下催化反应的能力),它们已被应用于众多工业领域。现在,它们已被引入到涉及食品生产与加工、制药、造纸、洗涤剂、生物柴油燃料等的应用中。在这篇小型综述中,我们将聚焦于微生物脂肪酶及其商业和工业应用的最新研究。我们还将讨论并预测这些重要技术的未来应用。