Induced Estrogen Receptor SUMOylation drives SERD activity
Hinterndorfer, M.;Schaetz, C.;Schmitt, S.;Schoenlein, M.;Hoi, D.;Krecioch, I.;Frommelt, F.;Shlei, M.;Kater, L.;Pacesca, M.;Munoz, M.;Kempf, G.;Kladnik, K.;Batty, P.;Imrichova, H.;Aguirre, J.;Hoegler, S.;Cavadini, S.;Seruggia, D.;Correia, B.;Obenauf, A.;Thomae, N.;Winter, G.
Show abstract
The ligand dependent transcription factor estrogen receptor (ER) is a key driver of and important drug target in breast cancer. Patients with advanced disease are typically treated with selective ER degraders (SERDs), whose therapeutic activity is commonly attributed to induced ER protein degradation. Yet the exact mechanism and relevance of degradation for clinical efficacy remain unclear. We show that SERDs directly induce ER SUMOylation, thereby triggering degradation via SUMO-targeted ubiquitin ligases (STUbLs). Inactivation of STUbLs prevents ER degradation and counterintuitively further sensitizes breast cancer cells to SERDs, rather than conferring resistance. SERD efficacy is independent of ER degradation, challenging the degradation-centric model of SERD action. Instead, SUMOylation recruits transcriptional co-repressors, turning SUMOylated ER into a dominant-negative repressor. Thus, SUMOylation rather than degradation is the direct consequence and driver of SERD activity. Our findings position SUMO-inducing drugs as a hitherto underappreciated yet clinically validated therapeutic modality with broad applicability.
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