Key Laboratory of Pesticide & Chemical Biology (CCNU), Ministry of Education, College of Chemistry, Central China Normal University, Wuhan 430079, China.
J Agric Food Chem. 2013 Aug 7;61(31):7453-61. doi: 10.1021/jf401939h. Epub 2013 Jul 26.
Cyanobacteria class II fructose-1,6-bisphoshate aldolase (Cy-FBA-II) and cyanobacteria fructose-1,6-bisphosphatase (Cy-FBPase) are two neighboring key regulatory enzymes in the Calvin cycle of the cyanobacteria photosynthesis system. Each of them might be taken as a potential target for designing novel inhibitors to chemically control harmful algal blooms (HABs). In the present paper, a series of novel inhibitors were rationally designed, synthesized, and optimized based upon the structural and interactional information of both Cy-FBA-II and Cy-FBPase, and their inhibitory activities were examined in vitro and in vivo. The experimental results showed that compounds L19e-L19g exhibited moderate inhibitory activities (IC50 = 28.1-103.2 μM) against both Cy-FBA-II and Cy-FBPase; compounds L19a-L19d, L19h, L20a-L20d exhibited high Cy-FBA-II inhibitory activities (IC50 = 2.3-16.9 μM) and moderate Cy-FBPase inhibitory activities (IC50 = 31.5-141.2 μM); however, compounds L20e-L20h could potently inhibit both Cy-FBA-II and Cy-FBPase with IC50 values less than 30 μM, which demonstrated more or less dual-target inhibitor's feature. Moreover, most of them exhibited potent algicide activity (EC50 = 0.8-22.3 ppm) against cyanobacteria Synechocystis sp. PCC 6803.
蓝细菌类果糖-1,6-二磷酸醛缩酶(Cy-FBA-II)和蓝细菌果糖-1,6-二磷酸酶(Cy-FBPase)是蓝细菌光合作用系统卡尔文循环中的两个相邻关键调节酶。它们中的每一个都可能被视为设计新型抑制剂以化学控制有害藻华(HABs)的潜在靶标。在本论文中,基于 Cy-FBA-II 和 Cy-FBPase 的结构和相互作用信息,合理设计、合成和优化了一系列新型抑制剂,并在体外和体内检查了它们的抑制活性。实验结果表明,化合物 L19e-L19g 对 Cy-FBA-II 和 Cy-FBPase 均表现出中等抑制活性(IC50=28.1-103.2 μM);化合物 L19a-L19d、L19h、L20a-L20d 对 Cy-FBA-II 具有高抑制活性(IC50=2.3-16.9 μM)和中等 Cy-FBPase 抑制活性(IC50=31.5-141.2 μM);然而,化合物 L20e-L20h 可以强有力地抑制 Cy-FBA-II 和 Cy-FBPase,IC50 值均小于 30 μM,这表明或多或少具有双重靶标抑制剂的特征。此外,它们中的大多数对蓝细菌集胞藻 PCC 6803 表现出很强的杀藻活性(EC50=0.8-22.3 ppm)。