Estrogen-related receptor
From Proteopedia
(Difference between revisions)
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<scene name='50/501401/Cv/4'>Binding of nuclear receptor corepressor 2 peptide and 4-hydroxytamoxifen</scene> to human estrogen-related receptor γ. The chemotherapeutic drugs bisphenol and <scene name='50/501401/Cv/5'>tamoxifen</scene> are nestled between 4 alpha helices in the ERR active site <ref>PMID:16990259</ref>. | <scene name='50/501401/Cv/4'>Binding of nuclear receptor corepressor 2 peptide and 4-hydroxytamoxifen</scene> to human estrogen-related receptor γ. The chemotherapeutic drugs bisphenol and <scene name='50/501401/Cv/5'>tamoxifen</scene> are nestled between 4 alpha helices in the ERR active site <ref>PMID:16990259</ref>. | ||
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+ | ==3D structures of estrogen-related receptor== | ||
+ | [[Estrogen-related receptor 3D structures]] | ||
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</StructureSection> | </StructureSection> | ||
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**[[2zkc]] - hERR ligand-binding domain + bisphenol Z<br /> | **[[2zkc]] - hERR ligand-binding domain + bisphenol Z<br /> | ||
**[[2zas]] - hERR ligand-binding domain + bisphenol A derivative<br /> | **[[2zas]] - hERR ligand-binding domain + bisphenol A derivative<br /> | ||
+ | **[[6a6k]], [[5yso]] - hERR ligand-binding domain + piperazine derivative<br /> | ||
**[[2p7a]] - hERR ligand-binding domain + methyl phenol<br /> | **[[2p7a]] - hERR ligand-binding domain + methyl phenol<br /> | ||
**[[2gpv]] - hERR ligand-binding domain + nuclear receptor corepressor 2 peptide + 4-hydroxytamoxifen<br /> | **[[2gpv]] - hERR ligand-binding domain + nuclear receptor corepressor 2 peptide + 4-hydroxytamoxifen<br /> |
Revision as of 10:21, 23 June 2019
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3D structures of estrogen-related receptor
Updated on 23-June-2019
References
- ↑ Ariazi EA, Jordan VC. Estrogen-related receptors as emerging targets in cancer and metabolic disorders. Curr Top Med Chem. 2006;6(3):203-15. PMID:16515477
- ↑ Wang L, Zuercher WJ, Consler TG, Lambert MH, Miller AB, Orband-Miller LA, McKee DD, Willson TM, Nolte RT. X-ray crystal structures of the estrogen-related receptor-gamma ligand binding domain in three functional states reveal the molecular basis of small molecule regulation. J Biol Chem. 2006 Dec 8;281(49):37773-81. Epub 2006 Sep 21. PMID:16990259 doi:http://dx.doi.org/10.1074/jbc.M608410200