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Murine Appendectomy Model of Chronic Colitis Associated Colorectal Cancer by Precise Localization of Caecal Patch
Published on: August 24, 2019
RIP3 promotes colitis-associated colorectal cancer by controlling tumor cell proliferation and CXCL1-induced immune
Zhen-Yu Liu1,2, Ming Zheng1,2, Yi-Ming Li1,2
1National Translational Science Center for Molecular Medicine, 710032 Xi'an, China.
Abstract:
Rationale: Necroptosis is a programmed form of non-apoptotic cell death that requires receptor-interacting protein 3 (RIP3). RIP3 has been shown to be relevant in multiple tumor types and has differential impact on tumor progression. We investigated whether RIP3 is involved in the progression of colitis-associated cancer (CAC) in mice. Methods: Tissues from colorectal cancer patients were examined for RIP3 expression. CAC was induced using azoxymethane (AOM) injection followed by dextran sodium sulfate (DSS) treatment in RIP3-deficient or wild-type mice. Colon tissues were collected and analyzed by Western blotting and gene expression profile analyses. Immune cell infiltration and CXCL1 expression were examined by flow cytometry and Real-time PCR, respectively. Results: RIP3 expression was upregulated in mouse CAC and human colon cancer. RIP3-deficient mice showed significantly attenuated colitis-associated tumorigenesis. Bone marrow transplantation experiments suggested that RIP3's function in hematopoietic cells primarily contributes to the phenotype. RIP3 supported epithelial proliferation and tumor growth via JNK signaling but had no effect on apoptosis. RIP3 deletion increased T cell accumulation and reduced infiltration by immunosuppressive subsets of myeloid cells during acute colitis and CAC. The immune-suppressive tumor microenvironment was dependent on RIP3-induced expression of the chemokine attractant CXCL1, and administration of recombinant CXCL1 during CAC restored tumorigenesis in Rip3-/- mice. Conclusion: Our results reveal an unexpected function of RIP3 in enhancing the proliferation of premalignant intestinal epithelial cells (IECs) and promoting myeloid cell-induced adaptive immune suppression. These two distinct mechanisms of RIP3-induced JNK and CXCL1 signalling contribute to CAC progression.
Insights
Receptor-interacting protein 3 (RIP3) promotes colitis-associated cancer (CAC) by enhancing intestinal epithelial cell proliferation and immune suppression. RIP3 deficiency attenuates CAC progression, highlighting its role in tumor development.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Necroptosis, a programmed cell death pathway, is regulated by receptor-interacting protein 3 (RIP3).
- RIP3's role in tumor progression is complex and varies across cancer types.
- The involvement of RIP3 in colitis-associated cancer (CAC) remains largely unexplored.
Purpose of the Study:
- To investigate the role of RIP3 in the development and progression of colitis-associated cancer (CAC).
- To elucidate the mechanisms by which RIP3 influences tumor growth and the tumor microenvironment in CAC.
Main Methods:
- Analysis of RIP3 expression in human colorectal cancer tissues.
- Induction of CAC in RIP3-deficient and wild-type mice using azoxymethane and dextran sodium sulfate.
- Assessment of tumor burden, immune cell infiltration, and gene expression profiles.
- Bone marrow transplantation studies to determine RIP3's cell-intrinsic function.
Main Results:
- RIP3 expression is upregulated in both mouse CAC and human colon cancer.
- RIP3 deficiency significantly reduced CAC development, with hematopoietic cells being the primary source of RIP3's pro-tumorigenic function.
- RIP3 promoted epithelial cell proliferation and tumor growth via JNK signaling, independent of apoptosis.
- RIP3 deletion led to increased T cell infiltration and reduced immunosuppressive myeloid cells, mediated by CXCL1 signaling.
Conclusions:
- RIP3 unexpectedly promotes CAC by enhancing premalignant intestinal epithelial cell proliferation.
- RIP3 contributes to an immunosuppressive tumor microenvironment by inducing CXCL1 expression, which suppresses adaptive immunity.
- Targeting RIP3 or its downstream pathways (JNK, CXCL1) may offer therapeutic strategies for CAC.
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