首页> 外文期刊>Carbohydrate research >SYNTHESIS, FROM NOJIRIMYCIN, OF N-1-ALKYL-D-GLUCONAMIDINES AS POTENTIAL GLUCOSIDASE INHIBITORS
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SYNTHESIS, FROM NOJIRIMYCIN, OF N-1-ALKYL-D-GLUCONAMIDINES AS POTENTIAL GLUCOSIDASE INHIBITORS

机译:从诺吉霉素中合成作为潜在糖苷酶抑制剂的N-1-烷基-D-葡糖嘧啶

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The labile reaction products from nojirimycin (5-amino-5-deoxy-D-glucopyranose, 1) with butyl- and dodecyl-amine were dehydrogenated with iodine to the corresponding N-1-alkyl-D-gluconamidines. A major by-product from the direct dehydrogenation of 1 was D-glucono-1,5-lactam. Progress of the reaction and product isolation was monitored by measuring the inhibitory potency of reaction mixtures with mammalian lysosomal and cytosolic beta-glucosidases. The latter was tentatively identified as a non-specific beta-glucosidase/beta-galactosidase in a commercial beta-galactosidase preparation from bovine liver by its resistance to conduritol B epoxide and strong inhibition by taurodeoxycholate. Both enzymes were inhibited by the N-1-dodecyl derivative > 1000-fold better than by 1. Unsubstituted D-gluconaminidine and its N-benzyl derivative could not be prepared by the method described, because ammonia was immediately transformed into insoluble NI3 and benzylamine was rapidly dehydrogenated. The amidines were stable in aqueous solution at pH less than or equal to 6, but were hydrolyzed above pH 8 to D-gluconolactam and alkylamine (half-life 24 h at pH 8 and 25 degrees C). A detailed study with the C-12-derivative at pH 10 indicated that the hydrolysis proceeded with formation of the N-dodecylamide of 5-amino-5-deoxy-D-gluconic acid as intermediate which still had considerable inhibitory potency against the cytosolic beta-glucosidase. A method is described for the quantification of cyclic amidines based on the reaction of amino groups with ninhydrin before and after hydrolysis with dilute alkali. (C) 1996 Elsevier Science Ltd. [References: 36]
机译:将来自诺奇霉素(5-氨基-5-脱氧-D-吡喃葡萄糖,1)与丁基和十二烷基胺的不稳定反应产物用碘脱氢成相应的N-1-烷基-D-葡糖酰胺。 1的直接脱氢的主要副产物是D-葡萄糖酸1,5-内酰胺。通过测量反应混合物对哺乳动物的溶酶体和胞质β-葡糖苷酶的抑制能力来监测反应进程和产物分离。在牛肝的商业β-半乳糖苷酶制剂中,由于其对conduritol B环氧化合物的抗性和牛磺脱氧胆酸盐的强抑制作用,后者被暂时鉴定为非特异性β-葡萄糖苷酶/β-半乳糖苷酶。两种酶的N-1-十二烷基衍生物的抑制作用都比1抑制作用强> 1000倍。未取代的D-葡糖苷和其N-苄基衍生物不能用上述方法制备,因为氨会立即转化为不溶性NI3和苄胺被迅速脱氢。 pH在pH小于或等于6的水溶液中稳定,但在pH 8以上水解为D-葡萄糖酸内酰胺和烷基胺(在pH 8和25℃下的半衰期为24小时)。用pH值为10的C-12衍生物进行的详细研究表明,水解过程以形成5-氨基-5-脱氧-D-葡萄糖酸的N-十二烷基酰胺为中间体,该中间体对胞质β仍然具有相当大的抑制能力。 -葡糖苷酶。描述了一种基于稀胺水解前后的氨基与茚三酮反应定量环am的方法。 (C)1996 Elsevier Science Ltd. [参考:36]

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