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A ternary switch model governing ERα ligand binding domain conformation

Nature Communications. 2025-11; 
Daniel P McDougal, Jordan L Pederick, Scott J Novick, Blagojce Jovcevski, Annmaree K Warrender, Bruce D Pascal, Patrick R Griffin, John B Bruning Institute for Photonics and Advanced Sensing (IPAS), School of Biological Sciences, The University of Adelaide
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Catalog Peptides codon optimised inserts for the human ERα (hERα) LBD, and also for Y537S and D538G variants of both orthologs, were synthesised by GenScript Biotech (Piscataway, NJ, USA) The human SRC2-2 coactivator peptide probe (5-FAM–KHKILHRLLQDSS–COOH; 98% purity) was purchased from GenScript Biotech (Piscataway, NJ, USA)56 Get A Quote

摘要

The transcription factor estrogen receptor α is the primary driver of ER+ breast cancer progression and a target of multiple FDA-approved anticancer drugs. Ligand-dependent activity of ERα is determined by helix-12 conformation within the ligand binding domain. However, how helix-12 transitions from an unliganded (apo) state to active (estrogen-bound) or inactive (SERM/SERD-bound) states remains unresolved. Here, we present the crystal structure of an apo estrogen receptor α ligand binding domain from the teleost Melanotaenia fluviatilis, revealing a third distinct helix-12 conformation. Structural mass spectrometry and molecular dynamics simulations reveal that apo helix-12 is maintained in a stable and dis... More

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