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针对蓝藻的丙酮酸脱氢酶复合体E1抑制剂的设计、合成及效能

Design, Synthesis, and Potency of Pyruvate Dehydrogenase Complex E1 Inhibitors against Cyanobacteria.

作者信息

Zhou Yuan, Feng Jiangtao, He Hongwu, Hou Leifeng, Jiang Wen, Xie Dan, Feng Lingling, Cai Meng, Peng Hao

机构信息

College of Chemistry, Central China Normal University, and Key Laboratory of Pesticide & Chemical Biology, Ministry of Education, 152 Luoyu Road, Wuhan 430079, China.

出版信息

Biochemistry. 2017 Dec 12;56(49):6491-6502. doi: 10.1021/acs.biochem.7b00636. Epub 2017 Oct 20.

Abstract

Safe and effective algaecides are needed to control agriculturally and environmentally significant algal species. Four series (6, 10, 17, and 21) of 29 novel 4-aminopyrimidine derivatives were rationally designed and synthesized. A part of 10, 17, and 21 displayed potent inhibition of Escherichia coli pyruvate dehydrogenase complex E1 (E. coli PDHc-E1) (IC = 2.12-18.06 μM) and good inhibition of Synechocystis sp. PCC 6803 (EC = 0.7-7.1 μM) and Microcystis sp. FACH 905 (EC = 3.7-7.6 μM). The algaecidal activity of these compounds positively correlated with their inhibition of E. coli PDHc-E1. In particular, 21l and 10b exhibited potent algaecidal activity against PCC 6803 (EC = 0.7 and 0.8 μM, respectively), values that were 2-fold increased compared to that of copper sulfate (EC = 1.8 μM), and showed the best inhibition of cyanobacterium PDHc-E1 (IC = 5.10 and 6.06 μM, respectively). 17h and 21e, the best inhibitors of E. coli PDHc-E1, were studied by molecular docking, site-directed mutagenesis, and enzymatic assays. These results revealed that the improved inhibition of novel inhibitors compared with that of the lead compound I was due to the formation of a new hydrogen bond with Leu264 at the active site of E. coli PDHc-E1. The results proved the great potential to obtain effective algaecides via the rational design of PDHc-E1 inhibitors.

摘要

需要安全有效的杀藻剂来控制对农业和环境有重要意义的藻类物种。合理设计并合成了29种新型4-氨基嘧啶衍生物的四个系列(6、10、17和21)。10、17和21系列中的一部分对大肠杆菌丙酮酸脱氢酶复合体E1(E. coli PDHc-E1)表现出强效抑制作用(IC = 2.12 - 18.06 μM),对集胞藻属PCC 6803(EC = 0.7 - 7.1 μM)和微囊藻属FACH 905(EC = 3.7 - 7.6 μM)有良好抑制作用。这些化合物的杀藻活性与其对E. coli PDHc-E1的抑制作用呈正相关。特别是,21l和10b对PCC 6803表现出强效杀藻活性(EC分别为0.7和0.8 μM),与硫酸铜(EC = 1.8 μM)相比增加了2倍,并且对蓝细菌PDHc-E1表现出最佳抑制作用(IC分别为5.10和6.06 μM)。通过分子对接、定点诱变和酶促测定研究了E. coli PDHc-E1的最佳抑制剂17h和21e。这些结果表明,与先导化合物I相比,新型抑制剂抑制作用的改善是由于在E. coli PDHc-E1活性位点与Leu264形成了新的氢键。结果证明了通过合理设计PDHc-E1抑制剂获得有效杀藻剂的巨大潜力。

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