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纤维素磷酸化酶的工程化用于糖苷合成。

Engineering of cellobiose phosphorylase for glycoside synthesis.

机构信息

InBio.be - Centre of Expertise Industrial Biotechnology and Biocatalysis, Ghent University, Coupure Links 653, Ghent, Belgium.

出版信息

J Biotechnol. 2011 Dec 20;156(4):253-60. doi: 10.1016/j.jbiotec.2011.07.006. Epub 2011 Jul 20.

Abstract

Disaccharide phosphorylases are increasingly applied for glycoside synthesis, since they are very regiospecific and use cheap and easy to obtain donor substrates. A promising enzyme is cellobiose phosphorylase (CP), which was discovered more than 50 years ago. Many other bacterial CP enzymes have since then been characterized, cloned and applied for glycoside synthesis. However, the general application of wild-type CP for glycoside synthesis is hampered by its relatively narrow substrate specificity. Recently we have taken some successful efforts to broaden the substrate specificity of Cellulomonas uda CP by directed evolution and protein engineering. This review will give an overview of the obtained results and address the applicability of the engineered CP enzymes for glycoside synthesis. CP is the first example of an extensively engineered disaccharide phosphorylase, and may provide valuable information for protein engineering of other phosphorylase enzymes.

摘要

双糖磷酸化酶在糖苷合成中应用越来越广泛,因为它们具有非常高的区域特异性,并且使用廉价且易于获得的供体底物。一种很有前途的酶是纤维二糖磷酸化酶(CP),它是 50 多年前发现的。此后,许多其他细菌 CP 酶已被表征、克隆并应用于糖苷合成。然而,由于野生型 CP 对糖苷合成的底物特异性相对较窄,其广泛应用受到阻碍。最近,我们通过定向进化和蛋白质工程成功地努力拓宽了纤维单胞菌 CP 的底物特异性。本文综述了获得的结果,并探讨了工程化 CP 酶在糖苷合成中的适用性。CP 是第一个经过广泛工程改造的二糖磷酸化酶,它可能为其他磷酸化酶的蛋白质工程提供有价值的信息。

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