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  5. The<i>ADAMTS12</i>metalloprotease gene is epigenetically silenced in tumor cells and transcriptionally activated in the stroma during progression of colon cancer

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Article
en
2009

The<i>ADAMTS12</i>metalloprotease gene is epigenetically silenced in tumor cells and transcriptionally activated in the stroma during progression of colon cancer

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en
2009
Vol 122 (16)
Vol. 122
DOI: 10.1242/jcs.050468

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Manel Esteller
Manel Esteller

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Ángela Moncada-Pazos
Álvaro J. Obaya
Mario F. Fraga
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Abstract

Proteases have long been associated with tumor progression, given their ability to degrade extracellular matrix components and facilitate invasion and metastasis. However, recent findings indicate that different proteases can also act as tumor-suppressor enzymes. We have recently reported that lung carcinoma cells expressing the ADAMTS-12 metalloprotease show a remarkable impairment of growth in immunodeficient mice as compared with parental cells. Here, we show that ADAMTS12 promoter is hypermethylated in cancer cell lines and tumor tissues. Interestingly, ADAMTS12 expression in the stromal cells surrounding epithelial malignant cells is higher than in the paired normal tissues. Moreover, the expression of this metalloprotease in colon fibroblasts co-cultured with colon cancer cell lines is higher than in those cultured alone. Furthermore, the expression of ADAMTS-12 by these fibroblasts is linked with an anti-proliferative effect on tumor cells. Based on these findings, we hypothesize that ADAMTS-12 is a novel anti-tumor protease that can reduce the proliferative properties of tumor cells. This function is lost by epigenetic silencing in tumor cells, but concurrently induced in stromal cells, probably as part of a response of the normal tissue aimed at controlling the progression of cancer.

How to cite this publication

Ángela Moncada-Pazos, Álvaro J. Obaya, Mario F. Fraga, Cristina G. Viloria, Gabriel Capellà, Mireia Gausachs, Manel Esteller, Carlos López-Otı́n, Santiago Cal (2009). The<i>ADAMTS12</i>metalloprotease gene is epigenetically silenced in tumor cells and transcriptionally activated in the stroma during progression of colon cancer. , 122(16), DOI: https://doi.org/10.1242/jcs.050468.

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Publication Details

Type

Article

Year

2009

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1242/jcs.050468

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