Video Experimental Relacionado
Updated: Feb 9, 2026

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
Expresión génica de genes diana del receptor de estrógeno β revela nuevas funciones represivas en el cáncer de mama
Spyros Tastsoglou1,2, Ilias V Karagounis3, Marios Miliotis1,2
1DIANA-Lab, Department of Computer Science & Biomedical Informatics, University of Thessaly, Lamia, Greece.
Abstract:
Inflammatory breast cancer (IBC) is a highly metastatic breast carcinoma, frequently characterized by estrogen receptor alpha (ERα) negativity and limited treatment options. Our previous research showed that the second ER subtype, ERβ, is associated with reduced metastasis in IBC patients and xenografts. We linked its anti-metastatic function to the inhibition of actin-based cell migration and Rho GTPase signaling. In this study, we employed a genomics approach to fully delineate the signaling underlying the anti-metastatic activity of ERβ. By cross-examining responsive mRNAs and miRNAs against chromatin binding sites in IBC cells with agonist-activated transfected and endogenous ERβ, we identified key regulatory binding motifs, direct targets, and associated biological functions. Our findings implicate pathways in development, metabolism and tumor microenvironment in the anti-metastatic action of ERβ. Clinical dataset analysis associates downstream factors with patient outcomes, indicating new molecules with therapeutic potential and highlighting the relevance of tumor repressive ERβ signaling in breast cancer.
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