Literature DB >> 17517338

Ligand binding by recombinant domains from insect ecdysone receptors.

L D Graham1, W M Johnson, A Pawlak-Skrzecz, R E Eaton, M Bliese, L Howell, G N Hannan, R J Hill.   

Abstract

The ligand binding domains (LBDs) from the EcR and USP proteins of four insect pests (Lucilia cuprina, Myzus persicae, Bemisia tabaci, Helicoverpa armigera) were purified as recombinant heterodimers. The K(d) values for [(3)H]-ponasterone A binding by LBD heterodimers that included the hinge regions (i.e., DE/F heterodimers) ranged 0.7-2.5 nM, with K(i) values for ecdysteroid and dibenzoylhydrazine ligands ranging from 0.1 nM to >448 microM. The K(d) and K(i) values for a recombinant H. armigera LBD heterodimer that lacked D-regions (i.e., an E/F heterodimer) were approximately 4 times higher than those for its DE/F counterpart. Rate constants were estimated for the L. cuprina LBD heterodimer. A fluorescein-inokosterone conjugate (K(i)~40 nM) was used to develop a novel binding assay based on fluorescence polarization. This assay, which ranked the affinity of competitor ecdysteroids in the same order as the [(3)H]-ponasterone A binding assay, is well suited to high-throughput screening. Ponasterone A had a higher affinity than muristerone A for the recombinant hemipteran LBD heterodimers, whereas the reverse was true for the recombinant dipteran one. The same preference was observed when these ligands were tested as inducers of ecdysone receptor-controlled gene expression in transfected mammalian cells. The binding data obtained in vitro using recombinant LBD heterodimers reflects the ability of agonists to induce transgene expression in recombinant mammalian cells, and can also reflect their efficacy as larvicides.

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Year:  2007        PMID: 17517338     DOI: 10.1016/j.ibmb.2007.03.006

Source DB:  PubMed          Journal:  Insect Biochem Mol Biol        ISSN: 0965-1748            Impact factor:   4.714


  7 in total

1.  Sequencing and structural homology modeling of the ecdysone receptor in two chrysopids used in biological control of pest insects.

Authors:  Moises João Zotti; Olivier Christiaens; Pierre Rougé; Anderson Dionei Grutzmacher; Paulo Dejalma Zimmer; Guy Smagghe
Journal:  Ecotoxicology       Date:  2012-01-24       Impact factor: 2.823

Review 2.  Ecdysteroid hormone action.

Authors:  Klaus-Dieter Spindler; C Hönl; Ch Tremmel; S Braun; H Ruff; M Spindler-Barth
Journal:  Cell Mol Life Sci       Date:  2009-12       Impact factor: 9.261

3.  Low field-relevant tebufenozide concentrations affect reproduction in Chironomus riparius (Diptera: Chironomidae) in a long-term toxicity test.

Authors:  Koffi T Tassou; Ralf Schulz
Journal:  Environ Sci Pollut Res Int       Date:  2012-11-17       Impact factor: 4.223

4.  Purification of an insect juvenile hormone receptor complex enables insights into its post-translational phosphorylation.

Authors:  Marek Jindra; William J McKinstry; Thomas Nebl; Lenka Bittova; Bin Ren; Jan Shaw; Tram Phan; Louis Lu; Jason K K Low; Joel P Mackay; Lindsay G Sparrow; George O Lovrecz; Ronald J Hill
Journal:  J Biol Chem       Date:  2021-11-07       Impact factor: 5.157

5.  Cloning, ligand-binding, and temporal expression of ecdysteroid receptors in the diamondback moth, Plutella xylostella.

Authors:  Baozhen Tang; Wei Dong; Pei Liang; Xuguo Zhou; Xiwu Gao
Journal:  BMC Mol Biol       Date:  2012-10-19       Impact factor: 2.946

6.  Exquisite ligand stereoselectivity of a Drosophila juvenile hormone receptor contrasts with its broad agonist repertoire.

Authors:  Lenka Bittova; Pavel Jedlicka; Martin Dracinsky; Palani Kirubakaran; Jiri Vondrasek; Robert Hanus; Marek Jindra
Journal:  J Biol Chem       Date:  2018-11-19       Impact factor: 5.157

7.  From Extrapolation to Precision Chemical Hazard Assessment: The Ecdysone Receptor Case Study.

Authors:  Raquel Ruivo; João Sousa; Teresa Neuparth; Olivier Geffard; Arnaud Chaumot; L Filipe C Castro; Davide Degli-Esposti; Miguel M Santos
Journal:  Toxics       Date:  2021-12-27
  7 in total

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