原卟啉原氧化酶
恶二唑
化学
乙醚
立体化学
二苯醚
生物化学
酶
有机化学
作者
Huang-Ze Yang,Zihao Huang,Jintong Zhang,Yan-Ming Yin,Dawei Wang,Zhen Xi
标识
DOI:10.1021/acs.jafc.5c06445
摘要
Protoporphyrinogen IX oxidase (PPO, EC 1.3.3.4) has long been recognized as a validated target in herbicide development. In this research, through structural analysis, we devised an Active Fragment Exchange and Link (AFEL) methodology to engineer a new category of N-phenyltriazinone derivatives. These compounds feature ether-connected oxadiazole moieties and serve as potent inhibitors of Nicotiana tabacum PPO (NtPPO). Following systematic structure-activity relationship (SAR) optimization, 34 novel compounds were identified. These compounds exhibit nanomolar Ki values against NtPPO and show promising herbicidal activity, with some compounds demonstrating lower Ki values compared to saflufenacil. Greenhouse herbicidal activity assays revealed that compound Iq exhibited the highest efficacy, achieving 100% inhibition against tested broadleaf weeds at 37.5 g a.i./ha, comparable to saflufenacil. Compound Iq exhibited better crop safety for maize at 150 g a.i./ha relative to saflufenacil. Molecular docking simulations revealed that the oxadiazole ring in compound Iq forms two hydrogen bonds with the Arg98 residue of NtPPO. These findings suggest that compound Iq has the potential to be a novel PPO inhibitor for managing agricultural weeds.
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