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Published on: October 11, 2022
Claudin-7 expression induces mesenchymal to epithelial transformation (MET) to inhibit colon tumorigenesis
A A Bhat1, J L Pope1,2, J J Smith3
1Department of Veterans Affairs, Tennessee Valley Healthcare System, Vanderbilt University Medical Center, Nashville, TN, USA.
Abstract:
In normal colon, claudin-7 is one of the highly expressed claudin proteins and its knockdown in mice results in altered epithelial cell homeostasis and neonatal death. Notably, dysregulation of the epithelial homeostasis potentiates oncogenic transformation and growth. However, the role of claudin-7 in the regulation of colon tumorigenesis remains poorly understood. Using a large colorectal cancer (CRC) patient database and mouse models of colon cancer, we found claudin-7 expression to be significantly downregulated in cancer samples. Most notably, forced claudin-7 expression in poorly differentiated and highly metastatic SW620 colon cancer cells induced epithelial characteristics and inhibited their growth in soft agar and tumor growth in vivo. By contrast, knockdown of claudin-7 in HT-29 or DLD-1 cells induced epithelial-to-mesenchymal transition (EMT), colony formation, xenograft-tumor growth in athymic mice and invasion. Importantly, a claudin-7 signature gene profile generated by overlapping the DEGs (differentially expressed genes in a high-throughput transcriptome analysis using claudin-7-manipulated cells) with human claudin-7 signature genes identified high-risk CRC patients. Furthermore, Rab25, a colon cancer suppressor and regulator of the polarized cell trafficking constituted one of the highly upregulated DEGs in claudin-7 overexpressing cells. Notably, silencing of Rab25 expression counteracted the effects of claudin-7 expression and not only increased proliferation and cell invasion but also increased the expression of p-Src and mitogen-activated protein kinase-extracellular signal-regulated kinase 1/2 that were suppressed upon claudin-7 overexpression. Of interest, CRC cell lines, which exhibited decreased claudin-7 expression, also exhibited promoter DNA hypermethylation, a modification associated with transcriptional silencing. Taken together, our data demonstrate a previously undescribed role of claudin-7 as a colon cancer suppressor and suggest that loss of claudin-7 potentiates EMT to promote colon cancer, in a manner dependent on Rab25.
Insights
Claudin-7 acts as a colon cancer suppressor, with its loss promoting tumor growth and metastasis through epithelial-to-mesenchymal transition (EMT). Restoring claudin-7 inhibits cancer progression and identifies high-risk patients.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Claudin-7 is highly expressed in normal colon epithelium, crucial for cell homeostasis.
- Dysregulation of epithelial homeostasis is linked to cancer development.
- The specific role of claudin-7 in colon tumorigenesis is not well understood.
Purpose of the Study:
- To investigate the role of claudin-7 in colon cancer development and progression.
- To determine the molecular mechanisms by which claudin-7 influences colon cancer.
- To identify claudin-7 as a potential biomarker for colorectal cancer risk.
Main Methods:
- Analysis of claudin-7 expression in colorectal cancer (CRC) patient databases and mouse models.
- Manipulation of claudin-7 expression (overexpression and knockdown) in CRC cell lines (SW620, HT-29, DLD-1).
- Assessment of cellular phenotypes including epithelial characteristics, proliferation, invasion, and tumor growth in vivo.
- Transcriptome analysis to identify differentially expressed genes (DEGs) and generate a claudin-7 signature.
- Investigation of the role of Rab25 and signaling pathways (Src, MAPK/ERK) in claudin-7 mediated effects.
- Analysis of DNA methylation patterns in CRC cell lines with varying claudin-7 expression.
Main Results:
- Claudin-7 expression is significantly downregulated in colorectal cancer samples.
- Forced claudin-7 expression in metastatic cells induced epithelial traits and inhibited tumor growth.
- Claudin-7 knockdown promoted epithelial-to-mesenchymal transition (EMT), invasion, and tumor growth.
- A claudin-7 gene signature identified high-risk CRC patients.
- Rab25, a colon cancer suppressor, was upregulated with claudin-7 overexpression and its silencing counteracted claudin-7's suppressive effects.
- Decreased claudin-7 expression correlated with promoter DNA hypermethylation.
Conclusions:
- Claudin-7 functions as a colon cancer suppressor.
- Loss of claudin-7 promotes colon cancer progression by enhancing EMT, in a Rab25-dependent manner.
- Claudin-7 and its associated gene signature hold potential for identifying high-risk colorectal cancer patients.
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