首都医科大学学报 ›› 2009, Vol. 30 ›› Issue (4): 510-515.doi: 10.3785/j.issn.1006-7795.2009.04.022

• 基础研究 • 上一篇    下一篇

肌苷衍生物的碱基核糖化研究

张建伟   

  1. 首都医科大学化学生物学与药学院化学生物学系
  • 收稿日期:2007-04-04 修回日期:1900-01-01 出版日期:2009-08-21 发布日期:2009-08-21

An Investigation on the Synthesis of N1-ribosylinosine

ZHANG Jian-wei   

  1. Department of Chemistry and Biochemistry, School of Chemical Biology and Pharmaceutical Sciences, Capital Medical University
  • Received:2007-04-04 Revised:1900-01-01 Online:2009-08-21 Published:2009-08-21

摘要: 目的 研究N1-核糖肌苷衍生物的合成反应。方法 用丙叉保护肌苷2',3'-OH,单甲氧基三苯甲基保护5'-OH,在碳酸钾、18-冠醚-6作用下与2,3,5-O-三苄基-1-溴代核糖反应。结果 反应得到N1-核糖肌苷衍生物。结论 用酰基做保护基易发生酰基重排反应, 改用丙叉保护肌苷2',3'-OH,再用单甲氧基三苯甲基保护5'-OH与2,3,5-O-三苄基-1-溴代核糖在碳酸钾18-冠醚-6作用下得到目的物N1-(2,3,5-O-三苄基-D-核糖)-2',3'-O-异亚丙基-5'-O-单甲氧基三苯甲基肌苷。

关键词: 肌苷, 酰基转移, N1-核糖肌苷

Abstract: Objective Cyclic adenosine diphosphoribose(cyclic ADP-ribose or cADPR), a recently discovered metabolite of nicotinamide adenine dinucleotide(NAD), is a potent calcium releasing agent postulated to be a new second messenger. In this paper, we wish to report an investigation of the reaction on the synthesis of N1-ribosylinosine as an important intermediate of cyclic inosine diphosphoribose(cIDPR) as an analog of cADPR. Methods To find a straightforward method for the synthesis of N1-ribosylation of inosine derivatives, phase transfer catalysis(PTC) reaction was applied. Benzoylated inosine reacted with benzoylated 1-ribosyl bromide in the presence of K2CO3 and 18-C-6 ether gave N1-benzoylinosine derivative by benzoyl rearrangement. Reaction of acylated inosine with acylated 1-ribosyl bromide was carried out under similar condition resulted in the formation of the corresponding N1-acetylinosine derivative. NMR and IR spectral analysis of the product supported the conclusion. The H-2, H-8 proton signal, and C-4, C-5, C-6 carbon signal showed distinct starting material correlation peak. H-2, H-8 proton signals and C-4, C-6 carbon signals appear at higher and C-5 carbon signal appear at lower than starting material correlation peak. We treated 2', 3'-o-isopropylidene-5'-o-p-anisyldiphenylmethylinosine and 2', 3'-o-benzoyl-5'-o-p-anisyldiphenylmethylribosyl bromide to give the corresponding N1-benzoylated species as the main product and a trace amount N1-ribosylinosine. To avoid acyl transformation, 2', 3'-o-isopropylidene-5'-o-p-anisyldiphenylmethylinosine was chose as reacting substance which reacted with 2,3,5-tri-o-benzylribosyl bromide under similar condition. Results As expected, N1-ribosylinosine derivative was obtained. In the reaction a 1∶ 4 N1-linked mixture of α and β-glucoside is observed. Spectral data supporting this conclusion included the mass spectrum and the 1HNMR spectrum. Conclusion Reaction of acylated inosine with acylated 1-ribosyl bromide was carried out in the presence of K2CO3 and 18-C-6 ether resulted in the formation of the corresponding N1-acetylinosine derivative. To avoid acyl transformation, 2', 3'-o-isopropylidene-5'-o-p-anisyldiphenylmethylinosine reacted with 2,3,5-tri-o-benzylribosyl bromide under similar condition to produce N1-ribosylinosine.

Key words: inosine, acyl transformation, N1-ribosylinosine

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