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Updated: Aug 7, 2026

In vitro Organoid Culture of Primary Mouse Colon Tumors
Published on: May 17, 2013
Bone morphogenetic protein signaling and growth suppression in colon cancer
Stayce E Beck1, Barbara H Jung, Antonio Fiorino
1Department of Medicine, University of California, San Diego, CA 92093-0063, USA.
Abstract:
Bone morphogenetic proteins (BMPs) are members of the transforming growth factor-beta superfamily, which utilize BMP receptors and intracellular SMADs to transduce their signals to regulate cell differentiation, proliferation, and apoptosis. Because mutations in BMP receptor type IA (BMPRIA) and SMAD4 are found in the germline of patients with the colon cancer predisposition syndrome juvenile polyposis, and because the contribution of BMP in colon cancers is largely unknown, we examined colon cancer cells and tissues for evidence of BMP signaling and determined its growth effects. We determined the presence and functionality of BMPR1A by examining BMP-induced phosphorylation and nuclear translocation of SMAD1; transcriptional activity via a BMP-specific luciferase reporter; and growth characteristics by cell cycle analysis, cell growth, and 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide metabolic assays. These assays were also performed after transfection with a dominant negative (DN) BMPR1A construct. In SMAD4-null SW480 cells, we examined BMP effects on cellular wound assays as well as BMP-induced transcription in the presence of transfected SMAD4. We also determined the expression of BMPR1A, BMP ligands, and phospho-SMAD1 in primary human colon cancer specimens. We found intact BMP signaling and modest growth suppression in HCT116 and two derivative cell lines and, surprisingly, growth suppression in SMAD4-null SW480 cells. BMP-induced SMAD signaling and BMPR1A-mediated growth suppression were reversed with DN BMPR1A transfection. BMP2 slowed wound closure, and transfection of SMAD4 into SW480 cells did not change BMP-specific transcriptional activity over controls due to receptor stimulation by endogenously produced ligand. We found no cell cycle alterations with BMP treatment in the HCT116 and derivative cell lines, but there was an increased G1 fraction in SW480 cells that was not due to increased p21 transcription. In human colon cancer specimens, BMP2 and BMP7 ligands, BMPRIA, and phospho-SMAD1 were expressed. In conclusion, BMP signaling is intact and growth suppressive in human colon cancer cells. In addition to SMADs, BMP may utilize SMAD4-independent pathways for growth suppression in colon cancers.
Insights
Bone morphogenetic proteins (BMPs) signal intact in colon cancer, exhibiting growth-suppressive effects. This suggests BMPs may use SMAD4-independent pathways for tumor suppression, offering new therapeutic avenues.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Bone morphogenetic proteins (BMPs) are crucial for cell regulation.
- Mutations in BMPRIA and SMAD4 are linked to juvenile polyposis, a colon cancer predisposition syndrome.
- The role of BMP signaling in colon cancer remains largely unexplored.
Purpose of the Study:
- To investigate the presence and functionality of BMP signaling in colon cancer cells and tissues.
- To determine the effects of BMP signaling on colon cancer cell growth and proliferation.
- To explore potential SMAD4-independent pathways in BMP-mediated growth suppression.
Main Methods:
- Assessed BMP receptor type IA (BMPRIA) functionality via BMP-induced SMAD1 phosphorylation and nuclear translocation.
- Utilized BMP-specific luciferase reporter assays for transcriptional activity.
- Performed cell cycle analysis, growth assays, and metabolic assays (MTT).
- Transfected cells with dominant-negative BMPRIA and SMAD4 constructs.
- Analyzed BMP ligand, BMPRIA, and phospho-SMAD1 expression in human colon cancer specimens.
Main Results:
- Intact BMP signaling was observed in colon cancer cell lines (HCT116) and tissues.
- BMP signaling demonstrated modest growth suppression in HCT116 cells and significant suppression in SMAD4-null SW480 cells.
- BMP-induced growth suppression was reversed by dominant-negative BMPRIA transfection.
- BMP2 treatment slowed wound closure in SW480 cells.
- Expression of BMP2, BMP7, BMPRIA, and phospho-SMAD1 was detected in human colon cancer specimens.
Conclusions:
- BMP signaling is active and exerts growth-suppressive effects in human colon cancer.
- BMPs may employ SMAD4-independent pathways to inhibit colon cancer cell growth.
- These findings highlight the potential of BMP signaling as a therapeutic target in colon cancer.
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