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植物对羟基苯丙酮酸双加氧酶的β-三酮抑制剂:其相互作用的建模与比较分子场分析

Beta-triketone inhibitors of plant p-hydroxyphenylpyruvate dioxygenase: modeling and comparative molecular field analysis of their interactions.

作者信息

Dayan Franck E, Singh Nidhi, McCurdy Christopher R, Godfrey Colette A, Larsen Lesley, Weavers Rex T, Van Klink John W, Perry Nigel B

机构信息

US Department of Agriculture, Natural Products Utilization Research Unit, Agricultural Research Service, University, Mississippi 38677, USA.

出版信息

J Agric Food Chem. 2009 Jun 24;57(12):5194-200. doi: 10.1021/jf9005593.

Abstract

p-Hydroxyphenylpyruvate dioxygenase (HPPD) is the target site of beta-triketone herbicides in current use. Nineteen beta-triketones and analogues, including the naturally occurring leptospermone and grandiflorone, were synthesized and tested as inhibitors of purified Arabidopsis thaliana HPPD. The most active compound was a beta-triketone with a C(9) alkyl side chain, not reported as natural, which inhibited HPPD with an I(50) of 19 +/- 1 nM. This is significantly more active than sulcotrione, which had an I(50) of 250 +/- 21 nM in this assay system. The most active naturally occurring beta-triketone was grandiflorone, which had an I(50) of 750 +/- 70 nM. This compound is of potential interest as a natural herbicide because it can be extracted with good yield and purity from some Leptospermum shrubs. Analogues without the 1,3-diketone group needed to interact with Fe(2+) at the HPPD active site were inactive (I(50)s > 50 microM), as were analogues with prenyl or ethyl groups on the triketone ring. Modeling of the binding of the triketones to HPPD, three-dimensional QSAR analysis using CoMFA (comparative molecular field analysis), and evaluation of the hydrophobic contribution with HINT (hydropathic interactions) provided a structural basis to describe the ligand/receptor interactions.

摘要

对羟基苯丙酮酸双加氧酶(HPPD)是目前使用的β-三酮类除草剂的作用靶标位点。合成了19种β-三酮及其类似物,包括天然存在的细籽酮和大花酮,并将其作为拟南芥纯化HPPD的抑制剂进行测试。活性最高的化合物是一种具有C(9)烷基侧链的β-三酮,该侧链并非天然存在,其对HPPD的抑制中浓度(I(50))为19±1 nM。这比磺草酮的活性显著更高,在该测定系统中磺草酮的I(50)为250±21 nM。活性最高的天然β-三酮是大花酮,其I(50)为750±70 nM。这种化合物作为天然除草剂具有潜在的研究价值,因为它可以从一些细籽属灌木中以较高的产率和纯度提取出来。没有在HPPD活性位点与Fe(2+)相互作用所需的1,3-二酮基团的类似物没有活性(I(50)>50 μM),三酮环上带有异戊烯基或乙基的类似物也是如此。对三酮与HPPD结合的建模、使用比较分子场分析(CoMFA)进行的三维定量构效关系分析以及用疏水相互作用(HINT)评估疏水作用,为描述配体/受体相互作用提供了结构基础。

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