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三酰甘油转酰基作用中的脂肪酶特异性

Lipase specificity in the transacylation of triacylglycerin.

作者信息

Utsugi Atsushi, Kanda Ayato, Hara Setsuko

机构信息

Department of Materials and Life Science, Faculty of Science and Technology, Seikei University, 3-1 Kichijoji-kitamachi 3, Musashino-shi, Tokyo 180-8633, Japan.

出版信息

J Oleo Sci. 2009;58(3):123-32. doi: 10.5650/jos.58.123.

Abstract

The Lipase-catalyzed transesterification method is utilized as a safe and effective method for preparing various structured oils. As each lipase shows different fatty acid specificity, it is important to select an appropriate lipase according to fatty acid species incorporated into oils. In the present study fatty acid specificities of lipases obtained from different origins were evaluated by transacylation between oils and various fatty acids. Of 12 kinds of lipases used, 5 lipases have 1,3-regio specificity and 7 lipases have non-regio specificity for hydrolysis of oils. Fatty acid substrates of transacylation were 8 saturated fatty acids with 6 to 18 carbon numbers, and C18 unsaturated fatty acids with different double bonds such as oleic, linoleic and linolenic acids. As results shown below, most lipases used gave high transacylation ratios for lauric acid when saturated fatty acids are compared and a different tendency in C18 unsaturated fatty acids. Regarding the fatty acid specificity of different lipases, fatty acid specificity of each lipase differed by its origin. Almost all lipases with or without regio specificities showed high selectivity for C10 and C12, especially C12 saturated fatty acid, and a little selectivity for C14-20 saturated fatty acids. On the other hand, C6 saturated fatty acid was little incorporated into TAG, and C18 fatty acids with higher unsaturation were incorporated easily into TAG. Transacylation activity defined as an acydolysis unit (AU) of an activity which is able to incorporate 1 micromol of C12 saturated fatty acid into TAG for 24h represents high relationship with the known hydrolysis activity. It is considered that structured lipids can be prepared effectively by transacylation based on the proper selection of lipase with higher transacylation or hydrolysis activities for specific fatty acids.

摘要

脂肪酶催化的酯交换法是制备各种结构化油脂的一种安全有效的方法。由于每种脂肪酶表现出不同的脂肪酸特异性,根据油脂中所含脂肪酸种类选择合适的脂肪酶很重要。在本研究中,通过油脂与各种脂肪酸之间的转酰基作用评估了不同来源脂肪酶的脂肪酸特异性。在所使用的12种脂肪酶中,5种脂肪酶对油脂水解具有1,3-区域特异性,7种脂肪酶具有非区域特异性。转酰基作用的脂肪酸底物为8种碳数为6至18的饱和脂肪酸以及具有不同双键的C18不饱和脂肪酸,如油酸、亚油酸和亚麻酸。如下所示的结果表明,在比较饱和脂肪酸时,大多数所使用的脂肪酶对月桂酸具有较高的转酰基化率,而对于C18不饱和脂肪酸则呈现不同的趋势。关于不同脂肪酶的脂肪酸特异性,每种脂肪酶的脂肪酸特异性因其来源而异。几乎所有具有或不具有区域特异性的脂肪酶对C10和C12,尤其是C12饱和脂肪酸表现出高选择性,而对C14 - 20饱和脂肪酸的选择性较低。另一方面,C6饱和脂肪酸很少掺入甘油三酯(TAG)中,而不饱和度较高的C18脂肪酸很容易掺入TAG中。定义为在24小时内能够将1微摩尔C12饱和脂肪酸掺入TAG中的活性的酰基水解单位(AU)的转酰基化活性与已知的水解活性具有高度相关性。基于对特定脂肪酸具有较高转酰基化或水解活性的脂肪酶的适当选择,认为可以通过转酰基作用有效地制备结构化脂质。

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