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Updated: Aug 19, 2026

An In Vitro Dormancy Model of Estrogen-sensitive Breast Cancer in the Bone Marrow: A Tool for Molecular Mechanism Studies and Hypothesis Generation
Published on: June 30, 2015
Estrogen receptor alpha, a molecular switch converting transforming growth factor-alpha-mediated proliferation into
Paolo Ciana1, Serena Ghisletti, Paola Mussi
1Center of Excellence on Neurodegenerative Diseases, University of Milan, 20133 Milan, Italy.
Abstract:
Transforming growth factor-alpha (TGF-alpha) is known to promote both proliferation and differentiation of neural cell progenitors. Using the human neuroblastoma cell line SK-N-BE that is induced to proliferate by TGF-alpha, we demonstrated that the expression of a single transcription factor, the estrogen receptor-alpha (ER alpha), can reroute the TGF-alpha mitogenic signaling toward a path leading to differentiation. With selected mutations in ER alpha and signal transducer and activator of transcription 3 (Stat3), we demonstrated that the blockade of TGF-alpha mitotic potential was not dependent on ER alpha DNA binding activity but required a transcriptionally active Stat3. In neuroblastoma cells, 17 beta-estradiol treatment induced a transient increase in the transcription of estrogen-responsive element-containing promoters including those regulating TGF-alpha and prothymosin alpha synthesis. Based on the data presented, we hypothesized that in the presence of prothymosin alpha, ER alpha activates its direct target genes and increases cell proliferation, whereas in the presence of high levels of TGF-alpha, ER alpha preferentially interacts with Stat3 and causes cell differentiation. Our results reveal a novel form of "end-product" regulation of an intracellular receptor that occurs through recruitment of membrane receptors and their signaling effector system. Cross-coupling between membrane and intracellular receptors has been described by several laboratories. This study proves the relevance of these interactions in cellular responses to growth factors.
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