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呋喃呋喃素和噻吩呋喃素:两种新型硫唑嘌呤类似物。合成、结构、抗肿瘤活性及与肌苷单磷酸脱氢酶的相互作用。

Furanfurin and thiophenfurin: two novel tiazofurin analogues. Synthesis, structure, antitumor activity, and interactions with inosine monophosphate dehydrogenase.

作者信息

Franchetti P, Cappellacci L, Grifantini M, Barzi A, Nocentini G, Yang H, O'Connor A, Jayaram H N, Carrell C, Goldstein B M

机构信息

Dipartimento di Scienze Chimiche, Università di Camerino, Italy.

出版信息

J Med Chem. 1995 Sep 15;38(19):3829-37. doi: 10.1021/jm00019a013.

Abstract

The syntheses of furan and thiophene analogues of tiazofurin (furanfurin and thiophenfurin, respectively) are described. Direct stannic chloride-catalyzed C-glycosylation of ethyl 3-furan-carboxylate (6) or ethyl 3-thiophencarboxylate (18) with 1,2,3,5-tetra-O-acetyl-D-ribofuranose gave 2- and 5-glycosylated regioisomers, as a mixture of alpha- and beta-anomers, and the beta-2,5-diglycosylated derivatives. Deprotection of ethyl 5-(2,3,5-tri-O-acetyl-beta-D-ribofuranosyl)furan-3-carboxylate (9 beta) and ethyl 5-(2,3,5-tri-O-acetyl-beta-D-ribofuranosyl)thiophene-3-carboxylate (20 beta) with sodium ethoxide afforded ethyl 5-beta-D-ribofuranosylfuran-3-carboxylate (12 beta) and ethyl 5-beta-D-ribofuranosylthiophene-3-carboxylate (23 beta) which were converted into 5-beta-D-ribofuranosylfuran-3-carboxamide (furanfurin, 4) and 5-beta-D-ribofuranosylthiophene-3-carboxamide (thiophenfurin, 5) by reaction with ammonium hydroxide. The anomeric configuration and the site of glycosylation were established by 1H-NMR and proton-proton nuclear Overhauser effect difference spectroscopy. The structure of compound 23 beta was confirmed by X-ray crystallography. Thiophenfurin was found to be cytotoxic in vitro toward murine lymphocytic leukemia P388 and L1210, human myelogenous leukemia K562, human promyelocytic leukemia HL-60, human colon adenocarcinoma LoVo, and B16 melanoma at concentrations similar to that of tiazofurin. In the same test furanfurin proved to be inactive. Thiophenfurin was found active in vivo in BD2F1 mice inoculated with L1210 cells with a % T/C of 168 at 25 mg/kg. K562 cells incubation with thiophenfurin resulted in inhibition of inosine monophosphate (IMP) dehydrogenase (63%) and an increase in IMP pools (6-fold) with a concurrent decrease in GTP levels (42%). Incubation of adenosine-labeled K562 cells with tiazofurin, thiophenfurin, and furanfurin resulted in a 2-fold higher NAD analogue formulation by thiophenfurin than by tiazofurin. Furanfurin was converted to the NAD analogue with only 10% efficiency. The results obtained support the hypothesis that the presence of S in the heterocycle in position 2 with respect to the glycosidic bond is essential for the cytotoxicity and IMP dehydrogenase activity of tiazofurin, while the N atom is not.

摘要

本文描述了噻唑呋林的呋喃和噻吩类似物(分别为呋喃呋林和噻吩呋林)的合成方法。用1,2,3,5 - 四 - O - 乙酰基 - D - 呋喃核糖在氯化亚锡直接催化下与3 - 呋喃甲酸乙酯(6)或3 - 噻吩甲酸乙酯(18)进行C - 糖基化反应,得到2 - 和5 - 糖基化的区域异构体,为α - 和β - 端基异构体的混合物,以及β - 2,5 - 二糖基化衍生物。用乙醇钠对5 - (2,3,5 - 三 - O - 乙酰基 - β - D - 呋喃核糖基)呋喃 - 3 - 甲酸乙酯(9β)和5 - (2,3,5 - 三 - O - 乙酰基 - β - D - 呋喃核糖基)噻吩 - 3 - 甲酸乙酯(20β)进行脱保护,得到5 - β - D - 呋喃核糖基呋喃 - 3 - 甲酸乙酯(12β)和5 - β - D - 呋喃核糖基噻吩 - 3 - 甲酸乙酯(23β),通过与氢氧化铵反应将它们转化为5 - β - D - 呋喃核糖基呋喃 - 3 - 甲酰胺(呋喃呋林,4)和5 - β - D - 呋喃核糖基噻吩 - 3 - 甲酰胺(噻吩呋林,5)。通过¹H - NMR和质子 - 质子核Overhauser效应差异光谱确定了端基构型和糖基化位点。通过X射线晶体学证实了化合物23β的结构。发现噻吩呋林在体外对小鼠淋巴细胞白血病P388和L1210、人骨髓性白血病K562、人早幼粒细胞白血病HL - 60、人结肠腺癌LoVo以及B16黑色素瘤具有细胞毒性,其浓度与噻唑呋林相似。在相同试验中,呋喃呋林被证明无活性。在接种L1210细胞的BD2F1小鼠体内,发现噻吩呋林具有活性,25 mg/kg时的%T/C为168。噻吩呋林与K562细胞孵育导致肌苷单磷酸(IMP)脱氢酶受到抑制(63%),IMP池增加(6倍),同时GTP水平降低(42%)。用噻唑呋林、噻吩呋林和呋喃呋林孵育腺苷标记的K562细胞,结果表明噻吩呋林形成的NAD类似物比噻唑呋林高2倍。呋喃呋林转化为NAD类似物的效率仅为10%。所得结果支持以下假设:相对于糖苷键,杂环中2位存在S对于噻唑呋林的细胞毒性和IMP脱氢酶活性至关重要,而N原子并非如此。

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