嘧啶基 1,3,4-恶二唑的合成及组蛋白去乙酰化酶抑制活性

IF 2 3区 化学 Q2 CHEMISTRY, ORGANIC
V. Jakubkiene, I. Labalaukyte, M. Schweipert, A. Zubriene, F.-J. Meyer-Almes, D. Matulis, S. Tumkevicius
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引用次数: 0

摘要

组蛋白去乙酰化酶(HDACs)是治疗各种疾病的一个很有前景的治疗靶点。本文介绍了一系列嘧啶基 1,3,4-噁二唑的合成及其 HDAC 抑制活性的研究,其中噁二唑支架通过亚甲基氧间隔连接到嘧啶环上。目标化合物是通过一系列反应合成的,包括 2-(甲硫基)嘧啶-4(3H)-酮与 2-溴乙酸乙酯发生 O-烷基化反应,然后氧化 2-甲硫基,用胺置换得到的 2-甲磺酰基、将得到的(2-氨基取代的嘧啶-4-基氧基)乙酸乙酯进行肼解,得到相应的酰肼,并在 O-乙基黄原酸乙酯或羰基二咪唑的处理下使其环化,相应地得到 1,3,4-噁二唑-2(3H)-硫酮和 1,3,4-噁二唑-2(3H)-酮。此外,两种 1,3,4-噁二唑-2(3H)-硫酮通过与甲醛和吗啉的曼尼希反应转化为 (N3)-morpholinomethyl 衍生物。中间体和目标化合物的收率从中等到极好不等。合成的化合物通过 1H 和 13C NMR 光谱以及 HRMS 数据进行了表征,其纯度通过 TLC 进行了控制。将合成的嘧啶基 1,3,4-噁二唑(18 个化合物)作为 HDAC4 和 HDAC8 同工酶的抑制剂进行了测试,并将其抑制活性与 Vorinostat 进行了比较。结果发现,大多数在嘧啶分子第 6 位含有甲基的噁二唑硫醚对 HDAC8 更有选择性,而在嘧啶环上含有丙基的噁二唑硫醚对 HDAC4 更有活性。在测试的化合物中,发现 5-((2-(二丁基氨基)-6-丙基嘧啶-4-基氧基)甲基)-1,3,4-噁二唑-2(3H)-硫酮 (48) 对 HDAC4 同工酶具有最强的抑制活性(IC50 = 4.而 5-((2-(环戊基氨基)-6-丙基嘧啶-4-氧基)甲基)-1,3,4-恶二唑-2(3H)-硫酮 (50) 是最有效的 HDAC8 抑制剂(IC50 = 6.8 μM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Synthesis and histone deacetylases inhibitory activity of pyrimidine-based 1,3,4-oxadiazoles

Synthesis and histone deacetylases inhibitory activity of pyrimidine-based 1,3,4-oxadiazoles

The histone deacetylases (HDACs) are being explored as a promising therapeutic target for the treatment of various diseases. Here, the synthesis of a series of pyrimidine-based 1,3,4-oxadiazoles, in which the oxadiazole scaffold is attached to the pyrimidine ring via a methyleneoxy spacer, is described and their HDAC inhibitory activity studied. The target compounds were synthesized by sequence of reactions involving O-alkylation of 2-(methylthio)pyrimidin-4(3H)-ones with ethyl 2-bromoethanoate followed by oxidation of the 2-methylthio group, displacement of the obtained 2-methylsulfonyl group with amines, hydrazinolysis of the obtained ethyl (2-amino-substituted pyrimidin-4-yloxy)acetates to give the corresponding hydrazides and their cyclization under the treatment with ethyl O-ethyl xanthate or carbonyldiimidazole to 1,3,4-oxadiazole-2(3H)-thiones and 1,3,4-oxadiazol-2(3H)-one, correspondingly. In addition, two 1,3,4-oxadiazole-2(3H)-thiones were converted into (N3)-morpholinomethyl derivatives by the Mannich reaction with formaldehyde and morpholine. The yields of intermediates and target compounds ranged from moderate to excellent. The synthesized compounds were characterized by 1H and 13C NMR spectra and HRMS data, their purity was controlled by TLC. The synthesized pyrimidine-based 1,3,4-oxadiazoles (18 compounds) were tested as inhibitors of the HDAC4 and HDAC8 isoforms and their inhibitory activity was compared with that of Vorinostat. Most of the oxadiazolethiones containing methyl group at the position 6 of the pyrimidine moiety were found to be more selective towards HDAC8, while oxadiazolethiones with propyl group in the pyrimidine ring were active against HDAC4. Among the tested compounds, 5-((2-(dibutylamino)-6-propylpyrimidin-4-yloxy)methyl)-1,3,4-oxadiazole-2(3H)-thione (48) was found to have the strongest inhibitory activity for HDAC4 isoform (IC50 = 4.2 μM vs. IC50 = 59 μM for Vorinostat) while 5-((2-(cyclopentylamino)-6-propylpyrimidin-4-yloxy)methyl)-1,3,4-oxadiazole-2(3H)-thione (50) was the most potent HDAC8 inhibitor (IC50 = 6.8 μM).

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来源期刊
Journal of Heterocyclic Chemistry
Journal of Heterocyclic Chemistry 化学-有机化学
CiteScore
5.20
自引率
4.20%
发文量
177
审稿时长
3.9 months
期刊介绍: The Journal of Heterocyclic Chemistry is interested in publishing research on all aspects of heterocyclic chemistry, especially development and application of efficient synthetic methodologies and strategies for the synthesis of various heterocyclic compounds. In addition, Journal of Heterocyclic Chemistry promotes research in other areas that contribute to heterocyclic synthesis/application, such as synthesis design, reaction techniques, flow chemistry and continuous processing, multiphase catalysis, green chemistry, catalyst immobilization and recycling.
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