Kim Woo-Jung, Kim Sung-Min, Lee Yoon-Hee, Kim Hyun Guell, Kim Hyung-Kwon, Moon Seong Hoon, Suh Hyun-Hyo, Jang Ki-Hyo, Park Yong-Il
Department of Biotechnology and Biomaterial Engineering Research Center, The Catholic University of Korea, Bucheon 420-743, Korea.
J Microbiol Biotechnol. 2008 Apr;18(4):616-23.
In spite of an increasing interest in fucoidans as biologically active compounds, no convenient commercial sources with fucoidanase activity are yet available. A marine bacterial strain that showed confluent growth on a minimal medium containing fucoidan, prepared from Korean Undaria pinnatifida sporophylls, as the sole carbon source was isolated and identified based on a 16S rDNA sequence analysis as a strain of Sphingomonas paucimobilis, and named Sphingomonas paucimobilis PF-1. The strain depolymerized fucoidan into more than 7 distinct lowmolecular- mass fucose-containing oligosaccharides, ranging from 305 to 3,749 Da. The enzyme activity was shown to be associated with the whole cell, suggesting the possibility of a surface display of the enzyme. However, a whole-cell enzyme preparation neither released the monomer Lfucose from the fucoidan nor hydrolyzed the chromogenic substrate p-nitrophenyl-alpha-L-fucoside, indicating that the enzyme may be an endo-acting fucoidanase rather than an alpha-L-fucosidase. Therefore, this would appear to be the first report on fucoidanolytic activity by a Sphingomonas species and also the first report on the enzymatic degradation of the Korean Undaria pinnatifida sporophyll fucoidan. Moreover, this enzyme activity may be very useful for structural analyses of fucose-containing polysaccharides and the production of bioactive fucooligosaccharides.
尽管岩藻依聚糖作为生物活性化合物越来越受到关注,但目前尚无方便的具有岩藻依聚糖酶活性的商业来源。从韩国裙带菜孢子叶制备的以岩藻依聚糖为唯一碳源的基本培养基上呈现融合生长的一株海洋细菌菌株,经16S rDNA序列分析鉴定为少动鞘氨醇单胞菌,并命名为少动鞘氨醇单胞菌PF-1。该菌株将岩藻依聚糖解聚为7种以上不同的含岩藻糖的低分子量寡糖,分子量范围为305至3749 Da。酶活性显示与全细胞相关,这表明该酶可能存在表面展示的可能性。然而,全细胞酶制剂既不能从岩藻依聚糖中释放出单体L-岩藻糖,也不能水解显色底物对硝基苯基-α-L-岩藻糖苷,这表明该酶可能是一种内切型岩藻依聚糖酶而非α-L-岩藻糖苷酶。因此,这似乎是关于鞘氨醇单胞菌属物种岩藻依聚糖分解活性的首次报道,也是关于韩国裙带菜孢子叶岩藻依聚糖酶促降解的首次报道。此外,这种酶活性对于含岩藻糖多糖的结构分析和生物活性岩藻糖寡糖的生产可能非常有用。