化学
生物化学
塑料醌
ATP合酶
拟南芥
酶
八氢番茄红素脱氢酶
拟南芥
植物烯
立体化学
原叶绿素
酶激活剂
生物物理学
酶抑制
作用机理
活性氧
机制(生物学)
堆积
酶分析
非竞争性抑制
生物合成
作者
Han Xiao,Min Li,Jian-Guo Wei,Si-Mei Zhou,Zi-Xuan Li,Zeng Shao-jie,Dawei Wang
标识
DOI:10.1021/acs.jafc.6c09571
摘要
Abstract Solanesyl diphosphate synthase (SPS; EC 2.5.1.85), a key enzyme in plastoquinone biosynthesis, has emerged as a promising herbicide target. Rimisoxafen is a bleaching herbicide that inhibits both SPS and phytoene desaturase (PDS), but the mechanism underlying SPS inhibition remains unclear. Here, we show that rimisoxafen inhibits SPS through a noncompetitive mechanism, similar to the commercial SPS inhibitor aclonifen. Rimisoxafen induced bleaching symptoms in Arabidopsis thaliana, strongly inhibited root growth, and triggered pronounced reactive oxygen species (ROS) accumulation in root tips. Structural analysis of the SPS–rimisoxafen complex revealed a dimer-interface binding mode mediated by π–π stacking and hydrogen-bonding interactions. Transcriptomic analyses further identified conserved hypoxia-associated responses, which were more strongly induced by rimisoxafen. These findings uncover the molecular mechanism of SPS inhibition by rimisoxafen and provide a framework for the structure-guided design of SPS-targeting and dual-target herbicides.
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