Rabbani Gulam, Ahmad Ejaz, Ahmad Abrar, Khan Rizwan Hasan
Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh 202 002, India; Department of Medical Biotechnology, Yeungnam University, 280 Daehak-ro, Gyeongsan, Gyeongbuk 38541, Republic of Korea.
Department of Pathology, University of Michigan Medical School, Ann Arbor, MI 48109, United States of America.
Int J Biol Macromol. 2023 Jan 15;225:822-839. doi: 10.1016/j.ijbiomac.2022.11.146. Epub 2022 Nov 17.
Microbial lipases are very prominent biocatalysts because of their ability to catalyze a wide variety of reactions in aqueous and non-aqueous media. Here microbial lipases from different origins (psychrophiles, mesophiles, and thermophiles) have been reviewed. This review emphasizes an update of structural diversity in temperature adaptation and industrial applications, of psychrophilic, mesophilic, and thermophilic lipases. The microbial origins of lipases are logically dynamic, proficient, and also have an extensive range of industrial uses with the manufacturing of altered molecules. It is therefore of interest to understand the molecular mechanisms of adaptation to temperature in occurring lipases. However, lipases from extremophiles (psychrophiles, and thermophiles) are widely used to design biotransformation reactions with higher yields, fewer byproducts, or useful side products and have been predicted to catalyze those reactions also, which otherwise are not possible with the mesophilic lipases. Lipases as a multipurpose biological catalyst have given a favorable vision in meeting the needs of several industries such as biodiesel, foods, and drinks, leather, textile, detergents, pharmaceuticals, and medicals.
微生物脂肪酶是非常重要的生物催化剂,因为它们能够在水性和非水性介质中催化各种各样的反应。本文综述了来自不同来源(嗜冷菌、嗜温菌和嗜热菌)的微生物脂肪酶。本综述着重介绍了嗜冷、嗜温和嗜热脂肪酶在温度适应性和工业应用方面结构多样性的最新情况。脂肪酶的微生物来源在逻辑上是动态的、高效的,并且在制造改性分子方面具有广泛的工业用途。因此,了解现有脂肪酶适应温度的分子机制很有意义。然而,来自极端微生物(嗜冷菌和嗜热菌)的脂肪酶被广泛用于设计产率更高、副产物更少或有用副产物的生物转化反应,并且预计也能催化那些嗜温脂肪酶无法催化的反应。脂肪酶作为一种多功能生物催化剂,在满足生物柴油、食品饮料、皮革、纺织、洗涤剂、制药和医疗等多个行业的需求方面展现出良好前景。