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了解皱褶假丝酵母脂肪酶:概述

Understanding Candida rugosa lipases: an overview.

作者信息

Domínguez de María Pablo, Sánchez-Montero Jose M, Sinisterra José V, Alcántara Andrés R

机构信息

Biotransformations Group, Organic and Pharmaceutical Chemistry Department, Faculty of Pharmacy, Complutense University, Pza. Ramón y Cajal s/n. E-28040, Madrid, Spain.

出版信息

Biotechnol Adv. 2006 Mar-Apr;24(2):180-96. doi: 10.1016/j.biotechadv.2005.09.003. Epub 2005 Nov 8.

Abstract

Candida rugosa lipase (CRL) is one of the enzymes most frequently used in biotransformations. However, there are some irreproducibility problems inherent to this biocatalyst, attributed either to differences in lipase loading and isoenzymatic profile or to other medium-engineering effects (temperature, a(w), choice of solvent, etc.). In addition, some other properties (influence of substrate and reaction conditions on the lid movement, differences in the glycosylation degree, post-translational modifications) should not be ruled out. In the present paper the recent developments published in the CRL field are overviewed, focusing on: (a) comparison of structural and biochemical data among isoenzymes (Lip1-Lip5), and their influence in the biocatalytical performance; (b) developments in fermentation technology to achieve new crude C. rugosa lipases; (c) biocatalytical reactivity of each isoenzyme, and methods for characterising them in crude CRL; (d) state-of-the-art of new applications performed with recombinant CRLs, both in CRL-second generation (wild-type recombinant enzymes), as well as in CRL-third generation, (mutants of the wt-CRL).

摘要

皱褶假丝酵母脂肪酶(CRL)是生物转化中最常用的酶之一。然而,这种生物催化剂存在一些固有的不可重复性问题,这要么归因于脂肪酶负载量和同工酶谱的差异,要么归因于其他培养基工程效应(温度、水活度、溶剂选择等)。此外,其他一些特性(底物和反应条件对盖子运动的影响、糖基化程度差异、翻译后修饰)也不应被排除。在本文中,对CRL领域发表的最新进展进行了综述,重点关注:(a)同工酶(Lip1-Lip5)之间的结构和生化数据比较及其对生物催化性能的影响;(b)发酵技术的进展,以获得新的皱褶假丝酵母粗脂肪酶;(c)每种同工酶的生物催化反应性以及在粗CRL中对其进行表征的方法;(d)使用重组CRL进行新应用的最新情况,包括第二代CRL(野生型重组酶)以及第三代CRL(野生型CRL的突变体)。

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