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关于利用茶氨酸生产对甲基食甲基菌9号中茶氨酸形成酶的特性研究。

Characterization of theanine-forming enzyme from Methylovorus mays no. 9 in respect to utilization of theanine production.

作者信息

Yamamoto Sachiko, Wakayama Mamoru, Tachiki Takashi

机构信息

Department of Bioscience and Biotechnology, Faculty of Science and Engineering, Ritsumeikan University, Shiga, Japan.

出版信息

Biosci Biotechnol Biochem. 2007 Feb;71(2):545-52. doi: 10.1271/bbb.60590. Epub 2007 Feb 7.

Abstract

For development of theanine production from glutamic acid and ethylamine by coupling yeast sugar fermentation as an ATP-regenerating system, several strains were selected from among about 200 methylamine- and/or methanol-assimilating bacteria depending on the theanine-forming activity of their permeated cells. The amount of theanine formed by the cells of the selected strains was much larger than that by the cells of Escherichia coli AD494 (DE3) expressing Pseudomonas taetrolens Y-30 glutamine synthetase (GS), which has been found to be a usable enzyme for theanine production. A GS-like enzyme responsible for the theanine-forming reaction was obtained from an obligate methylotroph isolate, Methylovorus mays No. 9. The enzyme was induced by methylamine in the culture medium. A molecular mass of 410-470 kDa was obtained by gel filtration of the enzyme, and 51 kDa by SDS-PAGE analysis. The enzyme showed high activity toward methylamine rather than ammonia, which indicates that it is similar to known gamma-glutamylmethylamide synthetase. The isolated enzyme also had high reactivity to ethylamine in a neutral pH range, and formed theanine from glutamic acid and ethylamine in a reaction mixture containing a yeast sugar fermentation system for ATP-regeneration.

摘要

为了通过耦合酵母糖发酵作为ATP再生系统,利用谷氨酸和乙胺生产茶氨酸,根据约200株甲胺和/或甲醇同化细菌的透性细胞的茶氨酸形成活性,从其中筛选出了几株菌株。所选菌株细胞形成的茶氨酸量比表达恶臭假单胞菌Y-30谷氨酰胺合成酶(GS)的大肠杆菌AD494(DE3)细胞形成的茶氨酸量要多得多,该酶已被发现是一种可用于茶氨酸生产的酶。从专性甲基营养菌分离株玉米甲基营养菌9号中获得了一种负责茶氨酸形成反应的类GS酶。该酶由培养基中的甲胺诱导产生。通过凝胶过滤法测得该酶的分子量为410 - 470 kDa,通过SDS-PAGE分析测得为51 kDa。该酶对甲胺的活性高于对氨的活性,这表明它与已知的γ-谷氨酰甲酰胺合成酶相似。分离得到的酶在中性pH范围内对乙胺也具有高反应活性,并且在含有用于ATP再生的酵母糖发酵系统的反应混合物中,能由谷氨酸和乙胺形成茶氨酸。

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