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In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
Repression of MicroRNA Function Mediates Inflammation-associated Colon Tumorigenesis
Takeshi Yoshikawa1, Jianfeng Wu2, Motoyuki Otsuka3
1Department of Gastroenterology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Background & Aims:
Little is known about the mechanisms by which chronic inflammation contributes to carcinogenesis, such as the development of colon tumors in patients with inflammatory bowel diseases. Specific microRNA (miRNAs) can function as suppressors or oncogenes, and widespread alterations in miRNA expression have been associated with tumorigenesis. We studied whether alterations in miRNA function contribute to inflammation-associated colon carcinogenesis.
Methods:
We studied the effects of inflammatory cytokines, such as tumor necrosis factor, interleukin-1α (IL1A), and IL1β (IL1B), on miRNA function, measured by activity of reporter constructs containing miRNA-binding sites in their 3' untranslated regions, in human 293T embryonic kidney, Caco-2, HT29, and HCT116 colon carcinoma cells, as well as dicer+/+ and dicer-/-, and Apobec3+/+ and Apobec3-/- mouse embryonic fibroblasts. Cells were analyzed by immunoblots, immunohistochemistry, and flow cytometry. We generated transgenic mice expressing reporter constructs regulated by LET7B, MIR122, and MIR29b response elements; some mice were given injections of miRNA inhibitors (anti-MIR122 or anti-LET7B), a negative control, or tumor necrosis factor. Liver tissues were collected and analyzed by immunoblotting. Reporter mice were given azoxymethane followed by dextran sulfate sodium to induce colitis and colon tumors; some mice were given the ROCK inhibitor fasudil along with these agents (ROCK inhibitors increase miRNA function). Colon tissues were collected and analyzed by immunohistochemistry, immunoblots, and fluorescence microscopy.
Results:
Incubation of cell lines with inflammatory cytokines reduced the ability of miRNAs to down-regulate expression from reporter constructs; dicer was required for this effect, so these cytokines relieve miRNA-dependent reductions in expression. The cytokines promoted degradation of APOBEC3G, which normally promotes miRNA loading into argonaute 2-related complexes. Mice with colitis had reduced miRNA function, based on increased expression of reporter genes. Administration of fasudil to mice did not reduce the severity of colitis that developed but greatly reduced the numbers of colon tumors formed (mean 2 tumors/colon in mice given fasudil vs 9 tumors/colon in mice given control agent). We made similar observations in IL10-deficient mice.
Conclusions:
We found inflammatory cytokines to reduce the activities of miRNAs. In mice with colitis, activities of miRNAs are reduced; administration of an agent that increases miRNA function prevents colon tumor formation in these mice. This pathway might be targeted to prevent colon carcinogenesis in patients with inflammatory bowel diseases.
Insights
Inflammatory cytokines reduce microRNA (miRNA) activity, contributing to colon cancer. Enhancing miRNA function in mice with colitis prevented tumor formation, suggesting a therapeutic target for inflammatory bowel disease-associated colon cancer.
Area of Science:
- Molecular Biology
- Oncology
- Gastroenterology
Background:
- Chronic inflammation, often seen in inflammatory bowel diseases, is linked to colon cancer development.
- MicroRNAs (miRNAs) play crucial roles in tumorigenesis, acting as either tumor suppressors or oncogenes.
- Understanding the mechanisms linking inflammation and cancer is vital for developing effective treatments.
Purpose of the Study:
- To investigate how inflammatory cytokines affect miRNA function.
- To determine if altered miRNA function contributes to inflammation-associated colon carcinogenesis.
- To explore potential therapeutic strategies targeting miRNA pathways for colon cancer prevention.
Main Methods:
- Assessed miRNA activity using reporter constructs in various cell lines and mouse models.
- Investigated the role of dicer and APOBEC3G in cytokine-mediated miRNA regulation.
- Induced colitis and colon tumors in mice and evaluated the effects of a ROCK inhibitor (fasudil) on tumor development and miRNA function.
Main Results:
- Inflammatory cytokines were found to reduce miRNA activity by promoting APOBEC3G degradation.
- Dicer was essential for the observed cytokine-mediated reduction in miRNA function.
- In mice with colitis, reduced miRNA activity correlated with increased reporter gene expression, and fasudil administration significantly decreased colon tumor formation.
- Similar results were observed in IL10-deficient mice.
Conclusions:
- Inflammatory cytokines impair miRNA function, a mechanism implicated in colon carcinogenesis.
- Restoring or enhancing miRNA function, as demonstrated with fasudil, can prevent colon tumor development in an inflammatory context.
- Targeting miRNA pathways presents a promising strategy for preventing colon cancer in patients with inflammatory bowel diseases.
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