Laboratory of Cellular Biology, Molecular Biology and Genetics Department, Democritus University of Thrace, University Campus, 68100 Alexandroupolis, Greece.
Laboratory of Organic, Bioorganic and Natural Product Chemistry, Molecular Biology and Genetics Department, Democritus University of Thrace, 68100 Alexandroupolis, Greece.
Molecules. 2024 Jan 30;29(3):647. doi: 10.3390/molecules29030647.
Diacylhydrazine bridged anthranilic acids with aryl and heteroaryl domains have been synthesized as the open flexible scaffold of arylamide quinazolinones in order to investigate flexibility versus rigidity towards DNA photocleavage and sensitivity. Most of the compounds have been synthesized via the in situ formation of their anthraniloyl chloride and subsequent reaction with the desired hydrazide and were obtained as precipitates, in moderate yields. All compounds showed high UV-A light absorption and are eligible for DNA photocleavage studies under this "harmless" irradiation. Despite their reduced UV-B light absorption, a first screening indicated the necessity of a halogen at the -position in relation to the amine group and the lack of an electron-withdrawing group on the aryl group. These characteristics, in general, remained under UV-A light, rendering these compounds as a novel class of UV-A-triggered DNA photocleavers. The best photocleaver, the compound , was active at concentrations as low as 2 μΜ. The 5-Nitro-anthranilic derivatives were inactive, giving the opposite results to their related rigid quinazolinones. Molecular docking studies with DNA showed possible interaction sites, whereas cytotoxicity experiments indicated the iodo derivative as a potent cytotoxic agent and the compound as a slight phototoxic compound.
已经合成了具有芳基和杂芳基结构域的二酰肼桥接的邻氨基苯甲酸,作为芳酰胺喹唑啉酮的开放柔性支架,以研究其对 DNA 光解的灵活性和刚性以及敏感性。大多数化合物都是通过其邻苯甲酰氯的原位形成,然后与所需的酰肼反应,以中等产率得到沉淀而合成的。所有化合物都表现出高的 UV-A 光吸收,适合在这种“无害”照射下进行 DNA 光解研究。尽管它们的 UV-B 光吸收减少,但初步筛选表明,在与胺基有关的 -位上需要一个卤素,并且芳基上缺乏吸电子基团。这些特性通常在 UV-A 光下仍然存在,使这些化合物成为一类新型的 UV-A 触发的 DNA 光解剂。最好的光解剂化合物 ,在低至 2 μM 的浓度下就具有活性。5-硝基邻氨基苯甲酸衍生物没有活性,与它们相关的刚性喹唑啉酮的结果相反。与 DNA 的分子对接研究表明了可能的相互作用位点,而细胞毒性实验表明碘代衍生物 是一种有效的细胞毒性剂,化合物 是一种轻微的光毒性化合物。