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与替加氟有关的C-硫代核糖核苷的合成、构象分析及生物活性

Synthesis, conformational analysis, and biological activity of C-thioribonucleosides related to tiazofurin.

作者信息

Franchetti P, Marchetti S, Cappellacci L, Jayaram H N, Yalowitz J A, Goldstein B M, Barascut J L, Dukhan D, Imbach J L, Grifantini M

机构信息

Dipartimento di Scienze Chimiche, Università di Camerino, Via S. Agostino, 1, 62032 Camerino, Italy.

出版信息

J Med Chem. 2000 Apr 6;43(7):1264-70. doi: 10.1021/jm990257b.

Abstract

The syntheses of furanthiofurin [5beta-D-(4'-thioribofuranosyl)furan-3-carboxamide, 1] and thiophenthiofurin [5beta-D-(4'-thioribofuranosyl)thiophene-3-carboxamide, 2], two C-thioribonucleoside analogues of tiazofurin, are described. Direct trifluoroacetic acid-catalyzed C-glycosylation of ethyl furan-3-carboxylate with 1-O-acetyl-2,3,5-tri-O-benzyl-4-thio-D-ribofuranose gave 2- and 5-glycosylated regioisomers, as a mixture of alpha and beta anomers. Ethyl 5-(2,3,5-tri-O-benzyl)-beta-D-(4'-thioribofuranosyl)furan-3-carboxylate (6beta) was debenzylated and then converted into the corresponding amide (furanthiofurin) by reaction with ammonium hydroxide. A similar C-glycosylation of ethyl thiophene-3-carboxylate with 1,2,3,5-tetra-O-acetyl-4-thio-D-ribofuranose catalyzed by stannic chloride afforded an anomeric mixture of 2- and 5-glycosylated regioisomers. Deacetylation of ethyl 5-(2,3,5-tri-O-acetyl)-beta-D-(4'-thioribofuranosyl)thiophene-3-carboxylate (13beta) with methanolic ammonia and treatment of the ethyl ester with ammonium hydroxide gave thiophenthiofurin. The glycosylation site and anomeric configuration were established by (1)H NMR spectroscopy. Thiophenthiofurin was found to be cytotoxic in vitro toward human myelogenous leukemia K562, albeit 39-fold less than thiophenfurin, while furanthiofurin proved to be inactive. K562 cells incubated with thiophenthiofurin resulted in inhibition of inosine 5'-monophosphate dehydrogenase (IMPDH) and an increase in IMP pools with a concurrent decrease in GTP levels. From computational studies it was deduced that, among the C-nucleoside analogues of tiazofurin, activity requires an electrophilic sulfur adjacent to the C-glycosidic bond and an energetically favorable conformer around chi = 0 degrees. Among these, the more constrained (least flexible) compounds (tiazofurin and thiophenfurin) are more active than the less constrained thiophenthiofurin. Those compounds which contain a nucleophilic oxygen in place of the thiazole or thiophene (oxazofurin, furanfurin, and furanthiofurin) show the least activity.

摘要

本文描述了噻唑呋林的两种碳硫代核糖核苷类似物呋喃硫代呋林[5β - D -(4'-硫代呋喃核糖基)呋喃 - 3 - 甲酰胺,1]和噻吩硫代呋林[5β - D -(4'-硫代呋喃核糖基)噻吩 - 3 - 甲酰胺,2]的合成。呋喃 - 3 - 羧酸乙酯与1 - O - 乙酰基 - 2,3,5 - 三 - O - 苄基 - 4 - 硫代 - D - 呋喃核糖在三氟乙酸直接催化下进行C - 糖基化反应,得到2 - 和5 - 糖基化区域异构体,为α和β异头物的混合物。5 -(2,3,5 - 三 - O - 苄基)-β - D -(4'-硫代呋喃核糖基)呋喃 - 3 - 羧酸乙酯(6β)脱苄基,然后与氢氧化铵反应转化为相应的酰胺(呋喃硫代呋林)。氯化锡催化噻吩 - 3 - 羧酸乙酯与1,2,3,5 - 四 - O - 乙酰基 - 4 - 硫代 - D - 呋喃核糖进行类似的C - 糖基化反应,得到2 - 和5 - 糖基化区域异构体的异头物混合物。5 -(2,3,5 - 三 - O - 乙酰基)-β - D -(4'-硫代呋喃核糖基)噻吩 - 3 - 羧酸乙酯(13β)用甲醇氨进行脱乙酰化反应,并用氢氧化铵处理乙酯得到噻吩硫代呋林。通过¹H NMR光谱确定了糖基化位点和异头构型。发现噻吩硫代呋林在体外对人髓性白血病K562细胞具有细胞毒性,尽管比噻吩呋林低39倍,而呋喃硫代呋林则无活性。用噻吩硫代呋林孵育K562细胞导致肌苷5'-单磷酸脱氢酶(IMPDH)受到抑制,IMP池增加,同时GTP水平降低。通过计算研究推断,在噻唑呋林的碳核苷类似物中,活性需要与C - 糖苷键相邻的亲电硫以及在χ = 0°附近能量有利的构象。其中,限制程度更高(柔性最小)的化合物(噻唑呋林和噻吩呋林)比限制程度较低的噻吩硫代呋林更具活性。那些含有亲核氧代替噻唑或噻吩的化合物(恶唑呋林、呋喃呋林和呋喃硫代呋林)活性最低。

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