Prabhu Deepak J, Ray Ujjayinee, Rajeev Anjaly, Joy Reshma, George Abi Thoppilan, George Jinu, Raghavan Sathees C, John Franklin
Post Graduate Research Department of Chemistry, Maharajas College, Ernakulam, Ernakulam, Kerala 682011, India.
Department of Microbiology, Techno India University, Kolkata, West Bengal 700091, India.
ACS Omega. 2023 Oct 5;8(41):38619-38631. doi: 10.1021/acsomega.3c05816. eCollection 2023 Oct 17.
Multicomponent reactions involving zwitterion generated from dimethyl acetylenedicarboxylate, aryl sulfonamide, and isocyanide to generate sulfonamide-conjugated ketenimines is reported. The synthetic strategy adopted is highly atom economical and stereoselective. Ketenimine sulfonamide analogues are key intermediates for further synthetic conversions to generate a combinatorial library of compounds. Furthermore, sulfonamide compounds are known to possess a broad spectrum of biological applications. All the novel molecules synthesized exhibit the potential to target the nonhomologous DNA end-joining (NHEJ) pathway with cytotoxic ability. Computational studies compliment the in vitro biological assays of the 8 small-molecule inhibitors. DNA double-strand breaks (DSBs) are considered as the most lethal among different DNA damages. NHEJ repairs about 70% of the DSBs generated in cells within mammals. The DNA-dependent protein kinase catalytic subunit is one of the PI3 kinases associated with NHEJ. Compounds DK01-DK08 were investigated for their ability to induce cancer cell death by treating with two leukemic cell lines where NHEJ is high. Results showed that bromoaryl (DK04)- and nitroaryl (DK05)-conjugated molecules showed excellent biological activity, having IC values of ∼2 μM in Nalm6 cell lines.
据报道,涉及由二甲基乙炔二羧酸酯、芳基磺酰胺和异氰化物生成的两性离子的多组分反应可生成磺酰胺共轭烯酮亚胺。所采用的合成策略具有高度的原子经济性和立体选择性。烯酮亚胺磺酰胺类似物是进一步合成转化以生成化合物组合库的关键中间体。此外,已知磺酰胺化合物具有广泛的生物学应用。所有合成的新型分子都具有靶向非同源DNA末端连接(NHEJ)途径并具有细胞毒性的潜力。计算研究补充了8种小分子抑制剂的体外生物学测定。DNA双链断裂(DSB)被认为是不同DNA损伤中最致命的。NHEJ修复哺乳动物细胞中产生的约70%的DSB。DNA依赖性蛋白激酶催化亚基是与NHEJ相关的PI3激酶之一。通过用两种NHEJ水平高的白血病细胞系处理,研究了化合物DK01-DK08诱导癌细胞死亡的能力。结果表明,溴芳基(DK04)和硝基芳基(DK05)共轭分子表现出优异的生物学活性,在Nalm6细胞系中的IC值约为2μM。