Yamada K, Fujita E, Nishimura S
Laboratory for Bio-Macromolecular Chemistry, Graduate School of Science, Hokkaido University, Sapporo, Japan.
Carbohydr Res. 1997 Dec;305(3-4):443-61. doi: 10.1016/s0008-6215(97)10051-9.
Efficient and practical methodology for the construction of carbohydrates, including oligosaccharide derivatives and sphingoglycolipids, was established on the basis of a water-soluble polymer supports having unique linkers that can be cleaved by specific conditions. Novel glycomonomers for the construction of polymer supports were synthesized and copolymerized with acrylamide to give three types of water-soluble glycopolymers having primer sugars through the specific linkers containing (i) p-substituted benzyl group, (ii) L-phenylalanine residue, and (iii) ceramide-mimetic L-serine derivative, respectively. These glycopolymers were employed for sugar elongation reactions with glycosyl transferases such as GlcNAc beta 1,4-galactosyl transferase, beta Gall-->3/4GlcNAc alpha-2,6-sialyl transferase, and beta Gall-->3/4GlcNAc alpha-2,3-sialyl transferase in the presence of each sugar nucleotide as glycosyl donor to afford polymers having N-acetyllactosamine, sialyl alpha-(2-->6) N-acetyllactosamine, and sialyl alpha-(2-->3) lactose residues in excellent yield. Subsequent hydrogenolysis, hydrolysis with alpha-chymotrypsin, or transglycosylation to ceramide with ceramide glycanase proceeds smoothly to give N-acetyllactosamine, a versatile sialyl alpha-(2-->6) N-acetyllactosamine derivative having a terminal amino group, and ganglioside GM3 in high yield.
基于具有可通过特定条件裂解的独特连接子的水溶性聚合物载体,建立了一种高效且实用的碳水化合物构建方法,包括寡糖衍生物和鞘糖脂。合成了用于构建聚合物载体的新型糖单体,并将其与丙烯酰胺共聚,得到三种通过特定连接子分别含有(i)对取代苄基、(ii)L-苯丙氨酸残基和(iii)神经酰胺模拟L-丝氨酸衍生物的带有起始糖的水溶性糖聚合物。在每种糖核苷酸作为糖基供体存在的情况下,这些糖聚合物用于与糖基转移酶(如GlcNAc β1,4-半乳糖基转移酶、βGal→3/4GlcNAc α-2,6-唾液酸转移酶和βGal→3/4GlcNAc α-2,3-唾液酸转移酶)进行糖延伸反应,以高产率得到具有N-乙酰乳糖胺、唾液酸α-(2→6)N-乙酰乳糖胺和唾液酸α-(2→3)乳糖残基的聚合物。随后的氢解、用α-胰凝乳蛋白酶水解或用神经酰胺聚糖酶进行向神经酰胺的转糖基化反应均顺利进行,以高产率得到N-乙酰乳糖胺、一种具有末端氨基的通用唾液酸α-(2→6)N-乙酰乳糖胺衍生物和神经节苷脂GM3。