Lee Jin-Ho, Lee Kwang-Ho, Kim Chang-Gyeom, Lee Se-Young, Kim Geun-Joong, Park Young-Hoon, Chung Sung-Oh
R&D Center for Bioproducts, CJ Corporation, Ichon-si, Kyonggi-do 467-812, Korea.
Appl Microbiol Biotechnol. 2005 Aug;68(2):213-9. doi: 10.1007/s00253-004-1862-5. Epub 2005 Jan 15.
A novel strain was isolated, Pseudomonas stutzeri CJ38, that enabled direct transformation of maltose to trehalose. In comparison with others reported to date, CJ38 provided a novel trehalose synthase (TSase) without any byproduct, including glucose. Activity analysis, using either maltose or trehalose as a substrate, showed a reversible reaction. There was also no detectable activity of related enzymes with liquid starch and maltooligosaccharides as substrates. Using a malPQ-negative host and MacConkey medium, the TSase gene was cloned in Escherichia coli from CJ38. The resulting sequence contained an open reading frame consisted of 689 amino acids with a calculated molecular mass of 76 kDa. A search for related sequences in various gene and protein data banks revealed a novel family of enzymes that was predicted putatively as a glycosidase or TSase family, with no biochemical evidence. The recombinant enzyme exhibited a high activity toward the substrate maltose, about 50-fold higher than the parent strain and resulted in a high conversion yield (72%) at a relatively high substrate concentration (20%). These results provided the possibility that the strain was effectively used as a potential biocatalyst for the production of trehalose from maltose in a one-step reaction.
分离出了一种新菌株——施氏假单胞菌CJ38,它能够将麦芽糖直接转化为海藻糖。与迄今为止报道的其他菌株相比,CJ38产生了一种新型海藻糖合酶(TSase),且没有包括葡萄糖在内的任何副产物。以麦芽糖或海藻糖为底物进行活性分析,结果显示该反应是可逆的。以液体淀粉和麦芽寡糖为底物时,也未检测到相关酶的活性。利用malPQ阴性宿主和麦康凯培养基,从CJ38中克隆了TSase基因到大肠杆菌中。所得序列包含一个由689个氨基酸组成的开放阅读框,计算分子量为76 kDa。在各种基因和蛋白质数据库中搜索相关序列,发现了一个新的酶家族,推测其可能为糖苷酶或TSase家族,但尚无生化证据。重组酶对底物麦芽糖表现出高活性,比亲本菌株高约50倍,并且在相对较高的底物浓度(20%)下产生了高转化率(72%)。这些结果表明,该菌株有可能作为一种潜在的生物催化剂,用于一步法从麦芽糖生产海藻糖。