Iftikhar Fatima, Ali Yousaf, Ahmad Kiani Farooq, Fahad Hassan Syed, Fatima Tabeer, Khan Ajmal, Niaz Basit, Hassan Abbas, Latif Ansari Farzana, Rashid Umer
Department of Chemistry, Hazara University, Mansehra 21120, Pakistan.
Department of Chemistry, Hazara University, Mansehra 21120, Pakistan; Kulliyyah of Science, International Islamic University Malaysia, Bandar Indera Mahkota, 25200 Kuantan, Malaysia.
Bioorg Chem. 2017 Oct;74:53-65. doi: 10.1016/j.bioorg.2017.07.003. Epub 2017 Jul 19.
In our previous report, we have identified 3,4-dihydropyrimidine scaffold as promising class of urease inhibitor in a structure based virtual screen (SBVS) experiment. In present study, we attempted to optimize the scaffold by varying C-5 substituent. The elongation of the C-5 chain was achieved by the reaction of C-5 ester with hydrazine leading to C-5 carbohydrazides which were further used as building blocks for the synthesis of fifteen new compounds having diverse moieties. A significantly higher in vitro urease inhibitory activity with IC values in submicromolar range was observed for semithiocarbazide derivatives (4a-c, 0.58-0.79µM) and isatin Schiff base derivative 5a (0.23µM). Docking analysis suggests that the synthesized compounds were anchored well in the catalytic site and extending to the entrance of binding pocket and thus restrict the mobility of the flap by interacting with its key amino acid residues. The overall results of urease inhibition have shown that these compounds can be further optimized and developed as lead urease inhibitors.
在我们之前的报告中,我们在基于结构的虚拟筛选(SBVS)实验中确定了3,4-二氢嘧啶骨架是一类有前景的脲酶抑制剂。在本研究中,我们试图通过改变C-5取代基来优化该骨架。C-5链的延长是通过C-5酯与肼反应生成C-5碳酰肼来实现的,C-5碳酰肼进一步用作合成十五种具有不同基团的新化合物的构建单元。对于氨基硫脲衍生物(4a-c,0.58 - 0.79µM)和异吲哚酮席夫碱衍生物5a(0.23µM),观察到显著更高的体外脲酶抑制活性,其IC值处于亚微摩尔范围。对接分析表明,合成的化合物很好地锚定在催化位点,并延伸到结合口袋的入口,从而通过与其关键氨基酸残基相互作用来限制瓣片的移动性。脲酶抑制的总体结果表明这些化合物可以进一步优化并开发为先导脲酶抑制剂。