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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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Abstract

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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