首页> 外文期刊>Collection of Czechoslovak Chemical Communications >Synthesis of n4-alkyl-5-azacytidines and their base-pairing with carbamoylguanidines - a contribution to explanation of the mutagenicity of 2'-deoxy-5-azacytidine
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Synthesis of n4-alkyl-5-azacytidines and their base-pairing with carbamoylguanidines - a contribution to explanation of the mutagenicity of 2'-deoxy-5-azacytidine

机译:n4-烷基-5-氮杂胞苷的合成及其与氨基甲酰基胍的碱基配对-有助于解释2'-脱氧-5-氮杂胞苷的致突变性

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A series of N~4-alkyl-5-azacytidines 3a-3h were prepared by treatment of the 4-methoxy ana logue 4 with the respective amines. In the case of propyl-, butyl-, sec-butyl-, benzyl- or furfurylamine, aggregates of azacytidines 3a-3e with their hydrolytic products 5a-5e were isolated. Similar aggregates were obtained with l-methyl-5-azacytosine (6) and 2-(methyl-carbamoyl)guanidine (7). Compound 7 was prepared by the reaction of guanidine with methyl isocyanatethe reaction of 2 or 3 equivalents gave the di- or tricarbamoyl derivatives 11 and 12, respectively. Cyclization of 7 and 11 with DMF dimethyl acetal afforded aza-cytosines 6 and 13, respectively. Aggregates of guanosine with 5-azacytosine nucleosides 1, 2 and 15 or of 5-aza-5,6-dihydrocytosine nucleosides 16 and 17 with 5-azacytidine (1) and its 2'-deoxy congener 2 have been prepared by co-crystallization of the respective pairs of nucleosides. The anomers of (deoxyribosylcarbamoyl)guanidine 20a and 20b have been prepared by hydrolysis of the deoxy nucleoside 2. An aggregate of the picrate (8a) of (ribosyl-carbamoyl)guanidine 8 with cytidine (9) has been obtained by co-crystallization of both components. Reaction of the methoxy nucleoside 4 with tert-butylamine gave, by contrast to the above mentioned amines, the a-anomer of O-methylribosylisobiuret 22, which was cyclized by DMF dimethyl acetal to the a-anomer of N~4,N~4-dimethyl-5-azacytidine 24. The connection of the base-pairing ability of carbamoylguanidines with the mutagenicity of 2'-deoxy-5-azacytidine (2) as well as the mechanism of inhibition of DNA methyltransferase by this nucleoside analogue is discussed. In contrast to the unsubstituted 5-azacytidine (1) or its N~4-methyl derivatives, none of the N~4-alkyl derivatives exhibited any antibacterial or antitumor activity at 100mug/ml or 10mumol/l concentrations, respectively.
机译:通过用相应的胺处理4-甲氧基类似物4,制备了一系列的N-4-烷基-5-氮杂胞苷3a-3h。在丙基,丁基,仲丁基,苄基或糠胺的情况下,分离出氮杂胞苷3a-3e及其水解产物5a-5e的聚集体。用1-甲基-5-氮杂胞嘧啶(6)和2-(甲基氨基甲酰基)胍(7)获得类似的聚集体。通过胍与异氰酸甲酯的反应制备化合物7。2或3当量的反应分别得到二或三氨基甲酰基衍生物11和12。用DMF二甲基乙缩醛将7和11环化,分别得到氮杂胞嘧啶6和13。通过共结晶制备了鸟苷与5-氮杂胞嘧啶核苷1、2和15或5-氮杂-5,6-二氢胞嘧啶核苷16和17与5-氮胞苷(1)及其2'-脱氧同源物2的聚集体各自的核苷对。 (脱氧核糖基氨基甲酰基)胍20a和20b的异构体是通过脱氧核苷2的水解制备的。(核糖基-氨基甲酰基)胍8的苦味酸盐(8a)与胞嘧啶核苷(9)的聚集体通过共结晶获得。这两个组成部分。与上述胺相反,甲氧基核苷4与叔丁胺的反应产生了O-甲基核糖基异缩二脲22的α-异头物,其被DMF二甲基乙缩醛环化为N〜4,N〜4的α-异头物。 -二甲基-5-氮杂胞苷24.讨论了氨基甲酰基胍的碱基配对能力与2'-脱氧-5-氮杂胞苷(2)的致突变性以及该核苷类似物抑制DNA甲基转移酶的机制。与未取代的5-氮杂胞苷(1)或其N〜4-甲基衍生物相反,N〜4-烷基衍生物在100μg/ ml或10μmol/ l的浓度下均未表现出任何抗菌或抗肿瘤活性。

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