HNRNPA2B1 regulates tamoxifen- and fulvestrant-sensitivity and hallmarks of endocrine resistance in breast cancer cells

Despite new combination therapies improving survival of breast cancer patients with estrogen receptor α (ER+) tumors, the molecular mechanisms for endocrine-resistant disease remain unresolved. Previously we demonstrated that expression of the RNA binding protein and N6-methyladenosine (m6A) reader...

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Veröffentlicht in:Cancer letters 2021-10, Vol.518, p.152-168
Hauptverfasser: Petri, Belinda J., Piell, Kellianne M., South Whitt, Gordon C., Wilt, Ali E., Poulton, Claire C., Lehman, Norman L., Clem, Brian F., Nystoriak, Matthew A., Wysoczynski, Marcin, Klinge, Carolyn M.
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Sprache:eng
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Zusammenfassung:Despite new combination therapies improving survival of breast cancer patients with estrogen receptor α (ER+) tumors, the molecular mechanisms for endocrine-resistant disease remain unresolved. Previously we demonstrated that expression of the RNA binding protein and N6-methyladenosine (m6A) reader HNRNPA2B1 (A2B1) is higher in LCC9 and LY2 tamoxifen (TAM)-resistant ERα breast cancer cells relative to parental TAM-sensitive MCF-7 cells. Here we report that A2B1 protein expression is higher in breast tumors than paired normal breast tissue. Modest stable overexpression of A2B1 in MCF-7 cells (MCF-7-A2B1 cells) resulted in TAM- and fulvestrant- resistance whereas knockdown of A2B1 in LCC9 and LY2 cells restored TAM and fulvestrant, endocrine-sensitivity. MCF-7-A2B1 cells gained hallmarks of TAM-resistant metastatic behavior: increased migration and invasion, clonogenicity, and soft agar colony size, which were attenuated by A2B1 knockdown in MCF-7-A2B1 and the TAM-resistant LCC9 and LY2 cells. MCF-7-A2B1, LCC9, and LY2 cells have a higher proportion of CD44+/CD24-/low cancer stem cells (CSC) compared to MCF-7 cells. MCF-7-A2B1 cells have increased ERα and reduced miR-222-3p that targets ERα. Like LCC9 cells, MCF-7-A2B1 have activated AKT and MAPK that depend on A2B1 expression and are growth inhibited by inhibitors of these pathways. These data support that targeting A2B1 could provide a complimentary therapeutic approach to reduce acquired endocrine resistance. •HNRNPA2B1 (A2B1) is higher in breast tumors and is upregulated in tamoxifen (TAM)-resistant LCC9 and LY2 breast cancer cells.•Stable A2B1 expression in MCF-7 cells blocks inhibition by TAM and fulvestrant and increases mesenchymal-like properties.•Knockdown of A2B1 restores TAM and fulvestrant sensitivity in TAM-resistant LCC9 and LY2 cells.•A2B1 confers properties of endocrine resistance including activated AKT and MAPK and increased cancer stem cells.
ISSN:0304-3835
1872-7980
DOI:10.1016/j.canlet.2021.07.015