Published May 16, 2022 | Version v1
Journal article Open

Stereospecific Lasofoxifene Derivatives Reveal the Interplay between Estrogen Receptor Alpha Stability and Antagonistic Activity in ESR1 Mutant Breast Cancer Cells

Description

Chemical manipulation of estrogen receptor alpha ligand binding domain structural mobility tunes receptor lifetime and influences breast cancer therapeutic activities. Selective estrogen receptor modulators (SERMs) extend ERα cellular lifetime/accumulation. They are antagonists in the breast but agonists in the uterine epithelium and/or in bone. Selective estrogen receptor degraders/downregulators (SERDs) reduce ERα cellular lifetime/accumulation and are pure antagonists. Activating somatic ESR1 mutations Y537S and D538G enable resistance to first-line endocrine therapies. SERDs have shown significant activities in ESR1 mutant setting while few SERMs have been studied. To understand whether chemical manipulation of ERα cellular lifetime and accumulation influences antagonistic activity, we studied a series of methylpyrollidine lasofoxifene derivatives that maintained the drug's antagonistic activities while uniquely tuning ERα cellular accumulation. These molecules were examined alongside a panel of antiestrogens in live cell assays of ERα cellular accumulation, lifetime, SUMOylation, and transcriptional antagonism. High-resolution x-ray crystal structures of WT and Y537S ERα ligand binding domain in complex with the methylated lasofoxifene derivatives or representative SERMs and SERDs show that molecules that favor a highly buried helix 12 antagonist conformation achieve the greatest transcriptional suppression activities in breast cancer cells harboring WT/Y537S ESR1. Together these results show that chemical reduction of ERα cellular lifetime is not necessarily the most crucial parameter for transcriptional antagonism in ESR1 mutated breast cancer cells. Importantly, our studies show how small chemical differences within a scaffold series can provide compounds with similar antagonistic activities, but with greatly different effects of the cellular lifetime of the ERα, which is crucial for achieving desired SERM or SERD profiles. SIGNIFICANCE This study shows that antiestrogens that enforce a wild-type-like estrogen receptor alpha antagonist conformation demonstrate improved therapeutic activities in hormone-resistant breast cancer cells harboring activating Y537S ESR1 mutant.

Data availability

All protein crystal structures have been deposited in the PDB under accession codes: 6PSJ, 7KBS, 7UJC, 7UJ8, 7UJM, 7UJY, 7UJF, 7UJW, 7UJO, 7UJ7, 6V8T, and 6VPF.

The following data sets were generated:

Fanning SWGreene GL (2020) RCSB Protein Data Bank ID 6PSJ. Bazedoxifene in Complex with Y537S Estrogen Receptor Alpha Ligand Binding Domain. https://www.rcsb.org/structure/6PSJ

Fanning SW (2020) RCSB Protein Data Bank ID 7KBS. Estrogen Receptor Alpha Ligand Binding Domain in Complex with Raloxifene. https://www.rcsb.org/structure/7KBS

Fanning SWGreene GL (2022) RCSB Protein Data Bank ID 7UJC. Estrogen Receptor Alpha Ligand Binding Domain Y537S Mutant in Complex with Raloxifene. https://www.rcsb.org/structure/7UJC

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJ8. Estrogen Receptor Alpha Ligand Binding Domain Y537S in Complex with 4-Hydroxytamoxifen. https://www.rcsb.org/structure/7UJ8

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJM. Estrogen Receptor Alpha Ligand Binding Domain in Complex with a Methylated Lasofoxifene Derivative That Increases Receptor Resonance Time in the Nucleus of Breast Cancer Cells. https://www.rcsb.org/structure/7UJM

Fanning SWGreene GL (2022) RCSB Protein Data Bank ID 7UJY. Estrogen Receptor Alpha Ligand Binding Domain Y537S Mutant in Complex with a Methylated Lasofoxifene Derivative that Enhances Estrogen Receptor Alpha Nuclear Resonance Time. https://www.rcsb.org/structure/7UJY

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJF. Estrogen Receptor Alpha Ligand Binding Domain in Complex with a Methylated Lasofoxifene Derivative with Selective Estrogen Receptor Degrader Properties. https://www.rcsb.org/structure/7UJF

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJW. Estrogen Receptor Alpha Ligand Binding Domain Y537S Mutant in Complex with a Methylated Lasofoxifene Derivative that Possesses Selective Estrogen Receptor Degrader Activities. https://www.rcsb.org/structure/7UJW

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJO. Estrogen Receptor Alpha Ligand Binding Domain in Complex with RU39411. https://www.rcsb.org/structure/7UJO

Fanning SW Greene GL (2022) RCSB Protein Data Bank ID 7UJ7. Estrogen Receptor Alpha Ligand Binding Domain Y537S Mutant in Complex with RU39411. https://www.rcsb.org/structure/7UJ7

Fanning SW Greene GL (2019) RCSB Protein Data Bank ID 6V8T. Estrogen Receptor Alpha Ligand Binding Domain Y537S in Complex with LSZ102. https://www.rcsb.org/structure/6V8T

Fanning SW Greene GL (2020) RCSB Protein Data Bank ID 6VPF. Estrogen Receptor Alpha Ligand Binding Domain in Complex with the Selective Estrogen Receptor Modulator Clomiphene. https://www.rcsb.org/structure/6VPF

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Additional details

Identifiers

DOI
10.7554/eLife.72512
Other
oai:uchicago.tind.io:9877

Funding

Susan G. Komen
CCR19608597
Ludwig Fund for Metastasis Research
Canadian Institutes of Health Research

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Ben May Department for Cancer Research