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嗜腺嘌呤丛赤壳重组鸟嘌呤脱氨酶及其在低嘌呤含量食品生产中的应用。

Arxula adeninivorans recombinant guanine deaminase and its application in the production of food with low purine content.

作者信息

Trautwein-Schult Anke, Jankowska Dagmara, Cordes Arno, Hoferichter Petra, Klein Christina, Matros Andrea, Mock Hans-Peter, Baronian Keith, Bode Rüdiger, Kunze Gotthard

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.

出版信息

J Mol Microbiol Biotechnol. 2014;24(2):67-81. doi: 10.1159/000357674. Epub 2014 Jan 24.

Abstract

Purines of exogenous and endogenous sources are degraded to uric acid in human beings. Concentrations >6.8 mg uric acid/dl serum cause hyperuricemia and its symptoms. Pharmaceuticals and the reduction of the intake of purine-rich food are used to control uric acid levels. A novel approach to the latter proposition is the enzymatic reduction of the purine content of food by purine-degrading enzymes. Here we describe the production of recombinant guanine deaminase by the yeast Arxula adeninivorans LS3 and its application in food. In media supplemented with nitrogen sources hypoxanthine or adenine, guanine deaminase (AGDA) gene expression is induced and intracellular accumulation of guanine deaminase (Agdap) protein occurs. The characteristics of the guanine deaminase isolated from wild-type strain LS3 and a transgenic strain expressing the AGDA gene under control of the strong constitutive TEF1 promoter were determined and compared. Both enzymes were dimeric and had temperature optima of 55°C with high substrate specificity for guanine and localisation in both the cytoplasm and vacuole of yeast. The enzyme was demonstrated to reduce levels of guanine in food. A mixture of guanine deaminase and other purine degradation enzymes will allow the reduction of purines in purine-rich foods.

摘要

外源性和内源性来源的嘌呤在人体内会降解为尿酸。血清尿酸浓度>6.8mg/dl会导致高尿酸血症及其症状。药物和减少富含嘌呤食物的摄入量被用于控制尿酸水平。后一种方法的一种新途径是通过嘌呤降解酶对食物中的嘌呤含量进行酶促降低。在此,我们描述了酵母嗜腺嘌呤阿苏菌LS3产生重组鸟嘌呤脱氨酶及其在食品中的应用。在添加氮源次黄嘌呤或腺嘌呤的培养基中,鸟嘌呤脱氨酶(AGDA)基因表达被诱导,并且鸟嘌呤脱氨酶(Agdap)蛋白在细胞内积累。对从野生型菌株LS3和在强组成型TEF1启动子控制下表达AGDA基因的转基因菌株中分离出的鸟嘌呤脱氨酶的特性进行了测定和比较。两种酶均为二聚体,最适温度为55°C,对鸟嘌呤具有高底物特异性,且定位于酵母的细胞质和液泡中。该酶被证明可降低食物中鸟嘌呤的水平。鸟嘌呤脱氨酶与其他嘌呤降解酶的混合物将能够降低富含嘌呤食物中的嘌呤含量。

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