Smad4 induces the tumor suppressor E-cadherin and P-cadherin in colon carcinoma cells

Smad4 is an intracellular transmitter of TGF-beta signals and its tumor suppressor function is presumed to reside in its capacity to mediate TGF-beta-induced growth inhibition. However, there is accumulating evidence that this hypothesis may be too simple. The roles of TGF-beta in carcinogenesis are...

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Veröffentlicht in:Oncogene 2002-09, Vol.21 (39), p.6049-6058
Hauptverfasser: MÜLLER, Nicole, REINACHER-SCHICK, Anke, BALDUS, Stephan, VAN HENGEL, Jolanda, BERX, Geert, BAAR, Anke, VAN ROY, Frans, SCHMIEGEL, Wolff, SCHWARTE-WALDHOFF, Irmgard
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container_end_page 6058
container_issue 39
container_start_page 6049
container_title Oncogene
container_volume 21
creator MÜLLER, Nicole
REINACHER-SCHICK, Anke
BALDUS, Stephan
VAN HENGEL, Jolanda
BERX, Geert
BAAR, Anke
VAN ROY, Frans
SCHMIEGEL, Wolff
SCHWARTE-WALDHOFF, Irmgard
description Smad4 is an intracellular transmitter of TGF-beta signals and its tumor suppressor function is presumed to reside in its capacity to mediate TGF-beta-induced growth inhibition. However, there is accumulating evidence that this hypothesis may be too simple. The roles of TGF-beta in carcinogenesis are complex and also comprise tumor promoting functions particularly in late stage carcinogenesis. Importantly, functional inactivation of Smad4 in colon carcinomas frequently occurs at late stages when tumors acquire invasive and metastatic capabilities. We have previously reported that stable re-expression of Smad4 in SW480 human colon carcinoma cells was adequate to suppress tumor growth in nude mice. However, it did not affect cell growth in vitro nor did it restore TGF-beta responsiveness. Here, we report that Smad4 transcriptionally induced classical cadherins including the invasion suppressor E-cadherin, presumably re-establishing epithelial morphology. Smad4-induced cadherins were able to recruit catenins to the plasma membrane and were functionally active in cell-cell adhesion. These results indicate a novel pathway of Smad4-mediated tumor suppression and suggest that Smad4 in colon cells may be involved in the maintenance of epithelial traits.
doi_str_mv 10.1038/sj.onc.1205766
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Action of oncogenes and antioncogenes ; Colon ; Colon cancer ; Colonic Neoplasms - metabolism ; Colonic Neoplasms - pathology ; Colorectal cancer ; Cytokines ; Cytoskeletal Proteins - metabolism ; DNA-Binding Proteins - physiology ; E-cadherin ; Fundamental and applied biological sciences. Psychology ; Gastroenterology. Liver. Pancreas. Abdomen ; Genes, Tumor Suppressor - physiology ; Humans ; Hypotheses ; Immunoenzyme Techniques ; Invasiveness ; Kinases ; Medical sciences ; Metastases ; Metastasis ; Mice ; Mice, Nude ; Molecular and cellular biology ; Ribonuclease, Pancreatic - metabolism ; Smad4 Protein ; Stomach. Duodenum. Small intestine. Colon. Rectum. 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Action of oncogenes and antioncogenes</topic><topic>Colon</topic><topic>Colon cancer</topic><topic>Colonic Neoplasms - metabolism</topic><topic>Colonic Neoplasms - pathology</topic><topic>Colorectal cancer</topic><topic>Cytokines</topic><topic>Cytoskeletal Proteins - metabolism</topic><topic>DNA-Binding Proteins - physiology</topic><topic>E-cadherin</topic><topic>Fundamental and applied biological sciences. Psychology</topic><topic>Gastroenterology. Liver. Pancreas. Abdomen</topic><topic>Genes, Tumor Suppressor - physiology</topic><topic>Humans</topic><topic>Hypotheses</topic><topic>Immunoenzyme Techniques</topic><topic>Invasiveness</topic><topic>Kinases</topic><topic>Medical sciences</topic><topic>Metastases</topic><topic>Metastasis</topic><topic>Mice</topic><topic>Mice, Nude</topic><topic>Molecular and cellular biology</topic><topic>Ribonuclease, Pancreatic - metabolism</topic><topic>Smad4 Protein</topic><topic>Stomach. Duodenum. Small intestine. Colon. Rectum. 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language eng
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source MEDLINE; Nature; EZB-FREE-00999 freely available EZB journals; Alma/SFX Local Collection
subjects alpha Catenin
Animals
beta Catenin
beta-Galactosidase - metabolism
Biological and medical sciences
Blotting, Northern
Blotting, Western
Cadherins - metabolism
Cancer
Carcinogenesis
Carcinoma
Cell adhesion
Cell physiology
Cell transformation and carcinogenesis. Action of oncogenes and antioncogenes
Colon
Colon cancer
Colonic Neoplasms - metabolism
Colonic Neoplasms - pathology
Colorectal cancer
Cytokines
Cytoskeletal Proteins - metabolism
DNA-Binding Proteins - physiology
E-cadherin
Fundamental and applied biological sciences. Psychology
Gastroenterology. Liver. Pancreas. Abdomen
Genes, Tumor Suppressor - physiology
Humans
Hypotheses
Immunoenzyme Techniques
Invasiveness
Kinases
Medical sciences
Metastases
Metastasis
Mice
Mice, Nude
Molecular and cellular biology
Ribonuclease, Pancreatic - metabolism
Smad4 Protein
Stomach. Duodenum. Small intestine. Colon. Rectum. Anus
Trans-Activators - metabolism
Trans-Activators - physiology
Transcription
Transforming Growth Factor beta - physiology
Transforming growth factor-b
Transforming growth factors
Tumor Cells, Cultured
Tumor suppressor genes
Tumors
title Smad4 induces the tumor suppressor E-cadherin and P-cadherin in colon carcinoma cells
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