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Published on: January 5, 2017
Kaiso is required for MTG16-dependent effects on colitis-associated carcinoma
Sarah P Short1,2, Caitlyn W Barrett1,2, Kristy R Stengel3
1Department of Medicine, Division of Gastroenterology, Vanderbilt University Medical Center, Nashville, TN, 37232, USA.
Abstract:
The myeloid translocation gene family member MTG16 is a transcriptional corepressor that relies on the DNA-binding ability of other proteins to determine specificity. One such protein is the ZBTB family member Kaiso, and the MTG16:Kaiso interaction is necessary for repression of Kaiso target genes, such as matrix metalloproteinase-7. Using the azoxymethane and dextran sodium sulfate (AOM/DSS) murine model of colitis-associated carcinoma, we previously determined that MTG16 loss accelerates tumorigenesis and inflammation. However, it was unknown whether this effect was modified by Kaiso-dependent transcriptional repression. To test for a genetic interaction between MTG16 and Kaiso in inflammatory carcinogenesis, we subjected single and double knockout (DKO) mice to the AOM/DSS protocol. Mtg16-/- mice demonstrated increased colitis and tumor burden; in contrast, disease severity in Kaiso-/- mice was equivalent to wild-type controls. Surprisingly, Kaiso deficiency in the context of MTG16 loss reversed injury and pro-tumorigenic responses in the intestinal epithelium following AOM/DSS treatment, and tumor numbers were returned to near to wild-type levels. Transcriptomic analysis of non-tumor colon tissue demonstrated that changes induced by MTG16 loss were widely mitigated by concurrent Kaiso loss, and DKO mice demonstrated downregulation of metabolism and cytokine-associated gene sets with concurrent activation of DNA damage checkpoint pathways as compared with Mtg16-/-. Further, Kaiso knockdown in intestinal enteroids reduced stem- and WNT-associated phenotypes, thus abrogating the induction of these pathways observed in Mtg16-/- samples. Together, these data suggest that Kaiso modifies MTG16-driven inflammation and tumorigenesis and suggests that Kaiso deregulation contributes to MTG16-dependent colitis and CAC phenotypes.
Insights
Loss of MTG16 accelerates colitis-associated cancer, but its interaction with Kaiso modifies this. Kaiso deficiency reverses MTG16-driven inflammation and tumorigenesis, suggesting Kaiso deregulation contributes to these phenotypes.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- MTG16 is a transcriptional corepressor interacting with Kaiso.
- MTG16 loss accelerates inflammation and tumorigenesis in a colitis-associated cancer model.
- The role of Kaiso in MTG16-dependent inflammatory carcinogenesis was unknown.
Purpose of the Study:
- To investigate the genetic interaction between MTG16 and Kaiso in inflammatory carcinogenesis.
- To determine if Kaiso-dependent repression modifies MTG16's role in tumorigenesis.
Main Methods:
- Utilized the azoxymethane/dextran sodium sulfate (AOM/DSS) murine model.
- Generated and analyzed single and double knockout (DKO) mice for Mtg16 and Kaiso.
- Performed transcriptomic analysis and studied intestinal enteroids.
Main Results:
- Mtg16 knockout accelerated colitis and tumor burden.
- Kaiso knockout alone did not affect disease severity.
- Kaiso deficiency reversed Mtg16 loss-induced injury and tumorigenesis, returning tumor numbers to wild-type levels.
- Transcriptomic analysis revealed Kaiso loss mitigated MTG16-driven changes, downregulating metabolism and cytokine genes while activating DNA damage checkpoints.
- Kaiso knockdown in enteroids reduced stem and WNT phenotypes.
Conclusions:
- Kaiso genetically interacts with MTG16 to modify inflammatory responses and tumorigenesis.
- Kaiso deficiency abrogates MTG16-driven pro-tumorigenic and inflammatory phenotypes.
- Kaiso deregulation may contribute to MTG16-dependent colitis and colitis-associated cancer (CAC).
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