1. Insecticidal heterolignans—Tubuline polymerization inhibitors with activity against chewing pests
- Author
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Martin Melchers, Sabine Hohmann, Oliver Gutbrod, Christian Arnold, Hans-Peter Thiesen, Isabelle Adelt, Udo Reckmann, Jutta Böhmer, Roman Hanke, Horst Antonicek, Patricia Behrmann, Olga Malsam, Peter Lösel, Elisabeth Peschel, Valentina Neufert, Marc van Houtdreve, Thomas Schenke, Nicole Blaha, Jens Frackenpohl, Hans-Christoph Weiss, Kathrin Vogelsang, and Robert Velten
- Subjects
Insecticides ,Molecular model ,Stereochemistry ,Clinical Biochemistry ,Pharmaceutical Science ,Crystallography, X-Ray ,Biochemistry ,Chemical synthesis ,Lignans ,Structure-Activity Relationship ,chemistry.chemical_compound ,Drug Discovery ,medicine ,Animals ,Structure–activity relationship ,Computer Simulation ,Cytotoxicity ,Molecular Biology ,Podophyllotoxin ,chemistry.chemical_classification ,Natural product ,fungi ,Organic Chemistry ,Tubulin Modulators ,Coleoptera ,Lepidoptera ,chemistry ,Polymerization ,Molecular Medicine ,Lactone ,medicine.drug - Abstract
Starting from natural product podophyllotoxin 1 substituted heterolignans were identified with promising insecticidal in vivo activity. The impact of substitution in each segment of the core structure was investigated in a detailed SAR study, and variation of substituents in both aromatic moieties afforded derivatives 5 and 43 with broad insecticidal activity against lepidopteran and coleopteran species. In vitro measurements supported by modeling studies indicate that heterolignans 3-134 act as tubuline polymerization inhibitors interacting with the colchicine-binding site. Insect specific structure-activity effects were observed showing that the insecticidal SAR described herein differs from reported cytotoxicity studies.
- Published
- 2009
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