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Detection of Signaling Effector-Complexes Downstream of BMP4 Using in situ PLA, a Proximity Ligation Assay
Published on: March 3, 2011
Involvement of bone morphogenetic protein 4 (BMP-4) in pituitary prolactinoma pathogenesis through a Smad/estrogen
Marcelo Paez-Pereda1, Damiana Giacomini, Damian Refojo
1Max Planck Institute of Psychiatry, Kraepelinstrasse 10, 80804 Munich, Germany.
Abstract:
Pituitary tumor development involves clonal expansion stimulated by hormones and growth factorscytokines. Using mRNA differential display, we found that the bone morphogenetic protein (BMP) inhibitor noggin is down-regulated in prolactinomas from dopamine D2-receptor-deficient mice. BMP-4 is overexpressed in prolactinomas taken from dopamine D2-receptor-deficient female mice, but expression of the highly homologous BMP-2 does not differ in normal pituitary tissue and prolactinomas. BMP-4 is overexpressed in other prolactinoma models, including estradiol-induced rat prolactinomas and human prolactinomas, compared with normal tissue and other pituitary adenoma types (Western blot analysis of 48 tumors). BMP-4 stimulates, and noggin blocks, cell proliferation and the expression of c-Myc in human prolactinomas, whereas BMP-4 has no action in other human pituitary tumors. GH3 cells stably transfected with a dominant negative of Smad4 (Smad4dn; a BMP signal cotransducer) or noggin have reduced tumorigenicity in nude mice. Tumor growth recovered in vivo when the Smad4dn expression was lost, proving that BMP-4Smad4 are involved in tumor development in vivo. BMP-4 and estrogens act through overlapping intracellular signaling mechanisms on GH3 cell proliferation and c-myc expression: they had additive effects at low concentrations but not at saturating doses, and their action was inhibited by blocking either pathway with the reciprocal antagonist (i.e., BMP-4 with ICI 182780 or 17beta-estradiol with Smad4dn). Furthermore, coimmunoprecipitation studies demonstrate that under BMP-4 stimulation Smad4 and Smad1 physically interact with the estrogen receptor. This previously undescribed prolactinoma pathogenesis mechanism may participate in tumorigenicity in other cells where estrogens and the type beta transforming growth factor family have important roles.
Insights
Bone morphogenetic protein-4 (BMP-4) drives prolactinoma growth by interacting with estrogen signaling. Inhibiting BMP-4 or its signaling pathway reduces tumor development, offering new therapeutic targets for pituitary tumors.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Pituitary tumor development, particularly prolactinomas, is influenced by hormones and growth factors.
- Dopamine D2-receptor deficiency is linked to altered signaling pathways in prolactinoma pathogenesis.
Purpose of the Study:
- To investigate the role of bone morphogenetic proteins (BMPs) and their inhibitors in prolactinoma development.
- To elucidate the signaling mechanisms underlying BMP-4-induced proliferation and its interaction with estrogen pathways in pituitary tumors.
Main Methods:
- mRNA differential display to identify gene expression changes.
- Western blot analysis to assess protein expression in human and rat pituitary tumors.
- Cell proliferation assays and tumorigenicity studies in nude mice using genetically modified GH3 cells.
- Analysis of signaling pathway interactions using dominant-negative constructs and specific antagonists.
Main Results:
- Noggin, a BMP inhibitor, is downregulated, while BMP-4 is overexpressed in prolactinomas from dopamine D2-receptor-deficient mice.
- BMP-4 overexpression is also observed in estradiol-induced rat and human prolactinomas, stimulating proliferation and c-Myc expression.
- BMP-4 and estrogen signaling pathways exhibit overlapping mechanisms, with additive effects on cell proliferation and c-Myc expression.
- BMP-4 stimulation leads to physical interaction between Smad4, Smad1, and the estrogen receptor, implicating this complex in tumor growth.
Conclusions:
- BMP-4 plays a critical role in prolactinoma pathogenesis by promoting cell proliferation and c-Myc expression.
- The interaction between BMP-4, Smad4, and the estrogen receptor represents a novel mechanism in prolactinoma development.
- Targeting the BMP-4/Smad4/estrogen receptor pathway may offer a therapeutic strategy for prolactinomas and potentially other tumors involving these signaling pathways.
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