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Silmitasertib (CX-4945) Disrupts ERα/HSP90 Interaction and Drives Proteolysis through the Disruption of CK2β Function
Hogyoung Kim1, Emma Elkins1, Rahib Islam1
1College of Pharmacy, Xavier University of Louisiana, New Orleans, LA 70125, USA.
Abstract:
Aberrant estrogen receptor (ERα) signaling mediates detrimental effects of tamoxifen including drug resistance and endometrial hyperplasia. ERα36, an alternative isoform of ERα, contributes to these effects. We have demonstrated that CK2 modulates ERα expression and function in breast cancer (BCa). Here, we assess if CX-4945 (CX), a clinical stage CK2 inhibitor, can disrupt ERα66 and ERα36 signaling in BCa. Using live cell imaging, we assessed the antiproliferative effects of CX in tamoxifen-sensitive and tamoxifen-resistant BCa cells in monolayer and/or spheroid cultures. CX-induced alterations in ERα66 and ERα36 mRNA and protein expression were assessed by RT-PCR and immunoblot. Co-immunoprecipitation was performed to determine the differential interaction of ERα isoforms with HSP90 and CK2 upon CX exposure. CX caused concentration-dependent decreases in proliferation in tamoxifen-sensitive MCF-7 and tamoxifen-resistant MCF-7 Tam1 cells and significantly repressed spheroid growth in 3D models. Additionally, CX caused dramatic decreases in endogenous or exogenously expressed ERα66 and ERα36 protein. Silencing of CK2β, the regulatory subunit of CK2, resulted in destabilization and decreased proliferation, similar to CX. Co-immunoprecipitation demonstrated that ERα66/36 show CK2 dependance for interaction with molecular chaperone HSP90. Our findings show that CK2 functions regulate the protein stability of ERα66 and ERα36 through a mechanism that is dependent on CK2β subunit and HSP90 chaperone function. CX may be a component of a novel therapeutic strategy that targets both tamoxifen-sensitive and tamoxifen-resistant BCa, providing an additional tool to treat ERα-positive BCa.
Insights
The CK2 inhibitor CX-4945 reduces proliferation in estrogen receptor-positive breast cancer (BCa) by destabilizing ERα66 and ERα36 proteins, offering a potential therapy for tamoxifen-resistant BCa.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Aberrant estrogen receptor alpha (ERα) signaling drives tamoxifen resistance and endometrial hyperplasia in breast cancer (BCa).
- ERα36, an alternative ERα isoform, contributes to these detrimental effects.
- Casein kinase 2 (CK2) is known to modulate ERα expression and function in BCa.
Purpose of the Study:
- To investigate if CX-4945 (CX), a clinical-stage CK2 inhibitor, can disrupt ERα66 and ERα36 signaling in BCa.
- To assess the antiproliferative effects of CX in tamoxifen-sensitive and tamoxifen-resistant BCa cells.
- To elucidate the mechanism by which CX affects ERα protein stability.
Main Methods:
- Live cell imaging to assess antiproliferative effects in monolayer and 3D spheroid cultures.
- RT-PCR and immunoblotting to evaluate ERα66 and ERα36 mRNA and protein expression.
- Co-immunoprecipitation to determine interactions between ERα isoforms, HSP90, and CK2 upon CX exposure.
Main Results:
- CX demonstrated concentration-dependent antiproliferative effects in tamoxifen-sensitive (MCF-7) and resistant (MCF-7 Tam1) BCa cells, including repressed spheroid growth.
- CX significantly decreased both endogenous and exogenous ERα66 and ERα36 protein levels.
- Silencing of CK2β mimicked CX effects, and co-immunoprecipitation revealed CK2- and HSP90-dependent regulation of ERα66/36 stability.
Conclusions:
- CK2 regulates ERα66 and ERα36 protein stability via CK2β and HSP90.
- CX-4945 disrupts ERα signaling by destabilizing ERα isoforms.
- CX-4945 represents a potential therapeutic strategy for both tamoxifen-sensitive and resistant ERα-positive BCa.
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