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Updated: Sep 11, 2025

In vitro Organoid Culture of Primary Mouse Colon Tumors
Published on: May 17, 2013
PIWIL2 downregulation in colon cancer promotes transposon activity and pro-tumorigenic phenotypes
Alyssa Risner1, Joyce Nair-Menon1, Abhinav Cheedipudi2
1Department of Regenerative Medicine and Cell Biology, Medical University of South Carolina, Charleston, SC 29425, USA.
Abstract:
Reactivation of transposable elements (TEs) in somatic tissues, particularly of LINE-1, is associated with disease by causing gene mutations and DNA damage. Previous work has shown that the PIWI pathway is crucial for TE suppression in the germline. However, the status and function of this pathway is not well characterized in differentiated somatic cells and there is a lack of consensus on the role of the pathway in somatic tumorigenesis. To shed light on this conundrum, we examined the PIWI pathway in colon cancer through combining bioinformatic analyses and cell-based assays. Shifted weighted annotation network (SWAN) analysis revealed that the pathway experiences significant allelic losses in colon cancer and that PIWIL2, the main catalytic component of the pathway responsible for TE silencing, experiences the highest percent deletions. PIWIL2 is downregulated in colon tumors of advanced stage, nodal metastasis, and in certain subtypes, correlating with poor survival, while it is also downregulated in ulcerative colitis, an inflammatory bowel disease that predisposes to colon cancer. PIWIL2 depletion in colon epithelial Caco2 cells leads to increased anchorage-independent growth, decreased levels of TE-targeting non-canonical piRNAs, increased LINE-1 levels and activity, and in DNA damage, altogether highlighting a tumor-suppressing role of PIWIL2 in the colon.
Insights
The PIWI pathway, crucial for suppressing transposable elements (TEs), is compromised in colon cancer. PIWIL2 downregulation promotes tumor growth and DNA damage, indicating its tumor-suppressive role.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Transposable elements (TEs), like LINE-1, can cause mutations and DNA damage when reactivated in somatic cells.
- The PIWI pathway is known to suppress TEs in the germline, but its role in somatic cells and cancer is unclear.
Purpose of the Study:
- To investigate the PIWI pathway's status and function in colon cancer.
- To determine the role of PIWIL2, a key component of the PIWI pathway, in colon tumorigenesis.
Main Methods:
- Bioinformatic analyses, including Shifted Weighted Annotation Network (SWAN) analysis.
- Cell-based assays using colon epithelial Caco2 cells.
Main Results:
- The PIWI pathway exhibits significant allelic losses in colon cancer, with PIWIL2 showing the highest deletion percentage.
- PIWIL2 is downregulated in advanced-stage colon tumors, associated with metastasis and poor survival.
- PIWIL2 downregulation correlates with increased LINE-1 activity, decreased non-canonical piRNAs, and DNA damage in colon cells.
- PIWIL2 is also downregulated in ulcerative colitis, a colon cancer precursor.
Conclusions:
- PIWIL2 functions as a tumor suppressor in the colon.
- Dysregulation of the PIWI pathway, particularly PIWIL2 loss, contributes to colon cancer development and progression.
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