Computational design of novel inhibitors to overcome weed resistance associated with acetohydroxyacid synthase (AHAS) P197L mutant

Pest Manag Sci. 2017 Jul;73(7):1373-1381. doi: 10.1002/ps.4460. Epub 2016 Dec 7.

Abstract

Backgound: Acetohydroxyacid synthase (AHAS; EC 2.2.1.6) is the first common enzyme in the biosynthetic pathway leading to the branched-chain amino acids in plants and a wide range of microorganisms. With the long-term and wide application of AHAS inhibitors, weed resistance is becoming a global problem, which leads to an urgent demand for novel inhibitors to antagonize both wild-type and resistant AHAS.

Results: Pyrimidinyl salicylic acid derivatives, as one of the main classes of commercial AHAS herbicides, show potential anti-resistant bioactivity to wild-type and P197L mutant. In current work, a series of novel 2-benzoyloxy-6-pyrimidinyl salicylic acid derivatives were designed through fragment-based drug discovery. Fortunately, the newly synthesized compounds showed good inhibitory activity against both wild-type and P197L mutant. Some compounds not only had a lower resistance factor value but also showed excellent inhibitory activity against wild-type AHAS and P197L mutant. Furthermore, greenhouse experiments showed compound 11m displayed almost 100% inhibition against both wild-type and high-resistant Descurainia sophia at a dosage of 150 g a.i. ha-1 .

Conclusion: The present work indicated that the 2-benzoyloxy-6-pyrimidinyl salicylic acid motif was well worth further optimization. Also, compound 11m could be used as a potential anti-resistant AHAS herbicide, which requires further research. © 2016 Society of Chemical Industry.

Keywords: acetohydroxyacid synthase; fragment-based drug discovery; herbicide; pyrimidinyl salicylic acid; weed resistance.

MeSH terms

  • Acetolactate Synthase / antagonists & inhibitors*
  • Brassicaceae / enzymology
  • Brassicaceae / genetics*
  • Computational Biology
  • Drug Design
  • Enzyme Inhibitors / chemistry*
  • Herbicide Resistance*
  • Herbicides / chemistry*
  • Mutation
  • Structure-Activity Relationship
  • Weed Control

Substances

  • Enzyme Inhibitors
  • Herbicides
  • Acetolactate Synthase