Ochiai Hirofumi, Ohmae Masashi, Kobayashi Shiro
Department of Materials Chemistry, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
Carbohydr Res. 2004 Dec 6;339(17):2769-88. doi: 10.1016/j.carres.2004.08.016.
Enzymatic glycosidation using sugar oxazolines 1-3 having a carboxylate group as glycosyl donors and compounds 4-6 as glycosyl acceptors was performed by employing a chitinase from Bacillus sp. as catalyst. All the glycosidations proceeded with full control in stereochemistry at the anomeric carbon of the donor and regio-selectivity of the acceptor. The N,N'-diacetyl-6'-O-carboxymethylchitobiose oxazoline derivative 1 was effectively glycosidated, under catalysis by the enzyme, with methyl N,N'-diacetyl-beta-chitobioside (4), pent-4-enyl N-acetyl-beta-D-glucosaminide (5), and methyl N-acetyl-beta-D-glucosaminide (6), affording in good yields the corresponding oligosaccharide derivatives having 6-O-carboxymethyl group at the nonreducing GlcNAc residue. The N,N'-diacetyl-6-O-carboxymethylchitobiose oxazoline derivative 2 was subjected to catalysis by the enzyme catalysis; however, no glycosidated products were produced through the reactions with 4, 5, and 6. Glycosidation reactions of the beta-d-glucosyluronic-(1-->4)-N-acetyl-D-glucosamine oxazoline derivative 3 proceeded with each of the glycosyl acceptors, giving rise to the corresponding oligosaccharide derivative having a GlcA residue at their nonreducing termini in good yields.
以具有羧酸盐基团的糖恶唑啉1 - 3作为糖基供体,化合物4 - 6作为糖基受体,使用来自芽孢杆菌属的几丁质酶作为催化剂进行酶促糖基化反应。所有糖基化反应在供体异头碳的立体化学和受体的区域选择性方面都得到了完全控制。在酶的催化下,N,N'-二乙酰基-6'-O-羧甲基壳二糖恶唑啉衍生物1与N,N'-二乙酰基-β-壳二糖苷甲酯(4)、4-戊烯基N-乙酰基-β-D-氨基葡萄糖苷(5)和N-乙酰基-β-D-氨基葡萄糖苷甲酯(6)有效地进行了糖基化反应,以良好的产率得到了在非还原型GlcNAc残基上具有6-O-羧甲基基团的相应寡糖衍生物。N,N'-二乙酰基-6-O-羧甲基壳二糖恶唑啉衍生物2在酶催化下进行反应;然而,与4、5和6反应未产生糖基化产物。β-D-葡萄糖醛酸-(1→4)-N-乙酰-D-葡萄糖胺恶唑啉衍生物3与每种糖基受体进行糖基化反应,以良好的产率得到了在其非还原端具有GlcA残基的相应寡糖衍生物。