4.7 Article

Synthesis and Activity of 2-Acyl-cyclohexane-1,3-dione Congeners Derived from Peperomia Natural Products against the Plant p-Hydroxyphenylpyruvate Dioxygenase Herbicidal Molecular Target Site

Journal

PLANTS-BASEL
Volume 11, Issue 17, Pages -

Publisher

MDPI
DOI: 10.3390/plants11172269

Keywords

natural products; triketones; p-hydroxyphenylpyruvate dioxygenase; herbicide mode of action; phytotoxins; quantitative structure-activity relationships; synthesis; essential

Categories

Funding

  1. FAPESP [2009/51850-9, 2014/50316-7, 2010/51561-4]
  2. PRP-USP (NAP-PN)
  3. USDA National Institute of Food and Agriculture [1016591, COL00785]
  4. USDA National Institute of Food and Agricultural [HAW-05033-H]

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In this study, the inhibitory activity of compounds derived from Peperomia natural products on plant HPPD was tested, and a compound with a C-11 alkyl side chain was found to be the most active. Further analysis and docking studies identified the key structural features affecting the inhibiting activity.
Plastoquinone is a key electron carrier in photosynthesis and an essential cofactor for the biosynthesis of carotenoids. p-Hydroxyphenylpyruvate dioxygenase (HPPD) is a vital enzymatic step in plastoquinone biosynthesis that is the target of triketone herbicides, such as those derived from the pharmacophore backbone of the natural product leptospermone. In this work, the inhibitory activity of a series of 2-acyl-cyclohexane-1,3-diones congeners derived from Peperomia natural products was tested on plant HPPD. The most active compound was a 2-acyl-cyclohexane-1,3-dione with a C-11 alkyl side chain (5d; I-50 app: 0.18 +/- 0.02 mu M) that was slightly more potent than the commercial triketone herbicide sulcotrione (I-50 app: 0.25 +/- 0.02 mu M). QSAR analysis and docking studies were performed to further characterize the key structural features imparting activity. A 1,3-dione feature was required for inhibition of HPPD. Molecules with a side chain of 11 carbons were found to be optimal for inhibition, while the presence of a double bond, hydroxy, or methyl beyond the required structural features on the cyclohexane ring generally decreased HPPD inhibiting activity.

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