Sakai Takeshi, Kimura Hitomi, Kojima Kaoru, Shimanaka Kazuo, Ikai Katsushige, Kato Ikunoshin
Takara Shuzo Co., Ltd., Biomedical Group, Zaifu-cho 82-4, Hirosaki-shi, Aomori-ken, 036-8216, Japan.
Mar Biotechnol (NY). 2003 Jan-Feb;5(1):70-8. doi: 10.1007/s10126-002-0056-3.
Three kinds of trisaccharides were prepared by digesting fucoidan from the brown alga Kjellmaniella crassifolia, with the extracellular enzymes of the marine bacterium Fucobacter marina. Their structures were determined as delta 4,5GlcpUA1-2(L-Fucp(3-O-sulfate)alpha 1-3)D-Manp, delta 4,5GlcpUA1-2(L-Fucp(3- O-sulfate)alpha 1-3)D-Manp(6-O-sulfate), and delta 4,5GlcpUA1-2(L-Fucp(2,4-O-disulfate)alpha 1-3)D-Manp(6-O-sulfate), which indicated the existence of a novel polysaccharide in the fucoidan and a novel glycosidase in the extracellular enzymes. In order to determine the complete structure of the polysaccharide and the reaction mechanism of the glycosidase, the fucoidan was partially hydrolyzed to obtain glucuronomannan, which is the putative backbone of the polysaccharide, and its sugar sequence was determined as (-4-D-GlcpUAbeta 1-2D-Manpalpha 1-)n, which disclosed that the main structure of the polysaccharide is (-4-D-GlcpUAbeta 1-2(L-Fucp(3-O-sulfate)alpha 1-3)D-Manpalpha 1-)n. Consequently, the glycosidase was deduced to be an endo-alpha-D-mannosidase that eliminatively cleaves the alpha-D-mannosyl linkage between D-Manp and D-GlcpUA residues in the polysaccharide and produces the above trisaccharides. The novel polysaccharide and glycosidase were tentatively named as sulfated fucoglucuronomannan (SFGM) and SFGM lyase, respectively.
通过用海洋细菌海藻糖杆菌(Fucobacter marina)的胞外酶消化厚叶海带(Kjellmaniella crassifolia)中的岩藻依聚糖,制备了三种三糖。它们的结构被确定为δ4,5GlcpUA1-2(L-Fucp(3-O-硫酸盐)α1-3)D-Manp、δ4,5GlcpUA1-2(L-Fucp(3-O-硫酸盐)α1-3)D-Manp(6-O-硫酸盐)和δ4,5GlcpUA1-2(L-Fucp(2,4-O-二硫酸盐)α1-3)D-Manp(6-O-硫酸盐),这表明岩藻依聚糖中存在一种新型多糖,胞外酶中存在一种新型糖苷酶。为了确定多糖的完整结构和糖苷酶的反应机制,将岩藻依聚糖部分水解以获得葡糖醛酸甘露聚糖,其被认为是多糖的推定主链,其糖序列被确定为(-4-D-GlcpUAbeta1-2D-Manpalpha1-)n,这揭示了多糖的主要结构是(-4-D-GlcpUAbeta1-2(L-Fucp(3-O-硫酸盐)α1-3)D-Manpalpha1-)n。因此,推测该糖苷酶是一种内切α-D-甘露糖苷酶,它通过消除性切割多糖中D-Manp和D-GlcpUA残基之间的α-D-甘露糖基连接来产生上述三糖。这种新型多糖和糖苷酶分别被暂定命名为硫酸化岩藻葡糖醛酸甘露聚糖(SFGM)和SFGM裂解酶。