Department of Chemistry, Recep Tayyip Erdogan University, Rize, Turkey.
Arch Pharm (Weinheim). 2021 Dec;354(12):e2100200. doi: 10.1002/ardp.202100200. Epub 2021 Sep 21.
The synthesis, in silico molecular docking, and in vitro urease inhibition studies of a novel series of benzothiazole derivatives are reported. The title compounds in the two series, namely, 2-({5-[(benzothiazol-2-ylthio)methyl]-1,3,4-oxadiazol-2-yl}thio)-1-(4-substituted-phenyl)ethan-1-one and 2-(benzothiazol-2-ylthio)-1-(4-substituted-phenyl)ethan-1-one oxime, were synthesized by the reaction of benzo[d]thiazole-2-thiol with different kinds of intermediates in several steps using both conventional and microwave techniques. All compounds were found to have an excellent degree of urease-inhibitory potential ranging between 16.16 ± 0.54 and 105.32 ± 2.10 µM when compared with the standard inhibitor acetohydroxamic acid with IC = 320.70 ± 4.24 µM. The structure-activity relationship was established in detail. The binding interactions of the compounds with the enzyme were confirmed through molecular docking. Further, 100 -ns molecular dynamics simulations were performed to investigate the stability and structural perturbations experienced by the most potent compound over the urease active site.
报道了一系列新型苯并噻唑衍生物的合成、计算机分子对接和体外脲酶抑制研究。标题化合物在两个系列中,即 2-({5-[(苯并[d]噻唑-2-基硫代)甲基]-1,3,4-恶二唑-2-基}硫代)-1-(4-取代苯基)乙酮和 2-(苯并[d]噻唑-2-基硫代)-1-(4-取代苯基)乙酮肟,是通过用常规和微波技术在几步中使苯并[d]噻唑-2-硫醇与不同种类的中间体反应合成的。与标准抑制剂乙酰羟肟酸(IC50=320.70±4.24µM)相比,所有化合物都被发现具有极好的脲酶抑制潜力,范围在 16.16±0.54 至 105.32±2.10µM 之间。详细建立了结构-活性关系。通过分子对接证实了化合物与酶的结合相互作用。此外,还进行了 100ns 分子动力学模拟,以研究最有效的化合物在脲酶活性部位经历的稳定性和结构扰动。