Related Experiment Video
Updated: Aug 29, 2026

Multiomics Analysis of TMEM200A as a Pan-Cancer Biomarker
Published on: September 15, 2023
Molecular and functional consequences of Smad4 C-terminal missense mutations in colorectal tumour cells
Karolien De Bosscher1, Caroline S Hill, Francisco J Nicolás
1Laboratory of Developmental Signalling, Cancer Research UK London Research Institute, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.
Abstract:
Smad4 is an essential signal transducer of the transforming growth factor beta (TGF-beta) signalling pathway and has been identified as a tumour suppressor, being mutated in approx. 50% of pancreatic cancers and approx. 15% of colorectal cancers. Two missense mutations in the C-terminal domain of Smad4, D351H (Asp351-->His) and D537Y (Asp537-->Tyr), have been described recently in the human colorectal cancer cell lines CACO-2 and SW948 respectively [Woodford-Richens, Rowan, Gorman, Halford, Bicknell, Wasan, Roylance, Bodmer and Tomlinson (2001) Proc. Natl. Acad. Sci. U.S.A. 98, 9719-9723]. Previous work in vitro suggested that only Asp-351 was required for interaction with Smad2 [Wu, Fairman, Penry and Shi (2001) J. Biol. Chem. 276, 20688-20694]. In the present study, we investigate the functional consequences of these point mutations in vivo. We demonstrate that neither of these colorectal cancer cells undergo growth arrest in response to TGF-beta, which can be explained, at least in part, by their inability to up-regulate cyclin-dependent kinase inhibitors p21 (CIP1 ) or p15 ( INK4b) after TGF-beta stimulation. Although the point-mutated Smad4s are expressed at normal levels in these colorectal cancer cells, they cannot interact with either TGF-beta-induced phosphorylated Smad2 or Smad3. As a result, these Smad4 mutants do not accumulate in the nucleus after TGF-beta stimulation, are not recruited to DNA by relevant Smad-binding transcription factors and cannot generate transcriptionally active DNA-bound complexes. Therefore both these colorectal tumour cells completely lack functional Smad4 activity owing to the missense mutations. Given the location of these mutations in the three-dimensional structure of the Smad4 C-terminal domain, the results also give us significant insights into Smad complex formation.
Insights
Colorectal cancer cells with Smad4 mutations D351H or D537Y lose transforming growth factor beta (TGF-β) pathway function. These mutations prevent Smad4 from interacting with Smad2/3, blocking TGF-β-induced growth arrest and gene regulation.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Signaling
Background:
- Smad4 is a crucial tumor suppressor in the transforming growth factor beta (TGF-β) pathway.
- Mutations in Smad4 are prevalent in pancreatic and colorectal cancers.
- Specific missense mutations (D351H, D537Y) in Smad4's C-terminal domain have been identified in colorectal cancer cell lines.
Purpose of the Study:
- To investigate the in vivo functional consequences of Smad4 missense mutations D351H and D537Y.
- To determine the impact of these mutations on TGF-β signaling in colorectal cancer cells.
Main Methods:
- Analysis of Smad4 mutations in colorectal cancer cell lines (CACO-2, SW948).
- Assessment of TGF-β-induced growth arrest.
- Measurement of cyclin-dependent kinase inhibitor (p21, p15) expression.
- Investigation of Smad4 interaction with phosphorylated Smad2/3.
- Evaluation of Smad4 nuclear localization and DNA-binding complex formation.
Main Results:
- Colorectal cancer cells with Smad4 mutations D351H or D537Y fail to arrest growth in response to TGF-β.
- These cells cannot up-regulate key TGF-β targets like p21 (CIP1) or p15 (INK4b).
- Mutated Smad4 proteins do not interact with TGF-β-induced Smad2 or Smad3, are not nuclear-localized, and do not form functional transcription complexes.
Conclusions:
- The identified Smad4 missense mutations (D351H, D537Y) abolish Smad4's tumor suppressor function in colorectal cancer.
- These mutations disrupt the TGF-β signaling pathway by preventing Smad4 complex formation and nuclear translocation.
- The findings provide structural insights into Smad complex formation and its disruption in cancer.
Related Concept Videos
Loss of Tumor Suppressor Gene Functions
When the tumor suppressor genes develop mutations or are lost, cells start growing out of control, leading to cancer. However, a single functional copy of the tumor suppressor gene is enough for the cells to maintain their normal functions and cell...
Abnormal Proliferation
Pleiotropy
Tumor Progression
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...
Cancer-Critical Genes II: Tumor Suppressor Genes
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...

