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The X-ray structure of a hemipteran ecdysone receptor ligand-binding domain: comparison with a lepidopteran ecdysone receptor ligand-binding domain and implications for insecticide design. | LitMetric

AI Article Synopsis

  • The ecdysone receptor is a key transcription factor involved in gene regulation during development and reproduction in arthropods, formed by the EcR and ultraspiracle protein.
  • Bisacylhydrazine insecticides target this receptor selectively, being effective against Lepidoptera but not Hemiptera or other insect orders.
  • A study revealed structural differences in the ecdysone receptor's ligand-binding pocket between the sweet potato whitefly and a lepidopteran species, suggesting these variations may underlie the selectivity of these insecticides.

Article Abstract

The ecdysone receptor is a hormone-dependent transcription factor that plays a central role in regulating the expression of vast networks of genes during development and reproduction in the phylum Arthropoda. The functional receptor is a heterodimer of the two nuclear receptor proteins ecdysone receptor (EcR) and ultraspiracle protein. The receptor is the target of the environmentally friendly bisacylhydrazine insecticides, which are effective against Lepidoptera but not against Hemiptera or several other insect orders. Here we present evidence indicating that much of the selectivity of the bisacylhydrazine insecticides can be studied at the level of their binding to purified ecdysone receptor ligand-binding domain (LBD) heterodimers. We report the crystal structure of the ecdysone receptor LBD heterodimer of the hemipteran Bemisia tabaci (Bt, sweet potato whitefly) in complex with the ecdysone analogue ponasterone A. Although comparison with the corresponding known LBD structure from the lepidopteran Heliothis virescens (Hv) ecdysone receptor revealed the overall mode of ponasterone A binding to be very similar in the two cases, we observed that the BtEcR ecdysteroid-binding pocket is structured differently to that of HvEcR in those parts that are not in contact with ponasterone A. We suggest that these differences in the ligand-binding pocket may provide a molecular basis for the taxonomic order selectivity of bisacylhydrazine insecticides.

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Source
http://dx.doi.org/10.1074/jbc.M500661200DOI Listing

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