TET Enzymes as Epigenetic Integrators in Intestinal Immunity, Inflammation, and Disease
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MLA
Singh, Dhirendra K, et al. Tet Enzymes As Epigenetic Integrators In Intestinal Immunity, Inflammation, and Disease. MDPI, 2026.APA
Singh, D., Yamaguchi, Y., Huang, L., Saito, C., Cassidy, O., & Nishiyama, K. (2026). TET Enzymes as Epigenetic Integrators in Intestinal Immunity, Inflammation, and Disease. MDPI.Chicago
Singh, Dhirendra K., Yukihiro Yamaguchi, Lei Huang, Chieko Saito, Olivia G Cassidy, and Keita Nishiyama. 2026. Tet Enzymes As Epigenetic Integrators In Intestinal Immunity, Inflammation, and Disease. MDPI.- Creator
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Singh, Dhirendra K.
- Other Affiliation: Department of Rheumatology and Inflammation Research, University of Gothenburg, Gothenburg, Sweden
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Yamaguchi, Yukihiro
- School of Medicine, Department of Pediatrics
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Huang, Lei
- Other Affiliation: Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, UK
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Saito, Chieko
- Other Affiliation: Department of Biology, American University, Washington, DC, USA
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Cassidy, Olivia G.
- School of Medicine, Department of Pediatrics
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Nishiyama, Keita
- Other Affiliation: Laboratory of Animal Food Function, School of Agricultural Science, Tohoku University, Sendai, Japan
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Singh, Dhirendra K.
- Abstract
DNA methylation plays a fundamental role in maintaining intestinal homeostasis, immune tolerance, and inflammatory balance. Active DNA demethylation, mediated by the ten-eleven translocation family of dioxygenases (TET1, TET2, and TET3), has emerged as an important epigenetic mechanism linking environmental and metabolic cues to gene regulatory programs in the gut. In the intestinal epithelium, TET-dependent DNA hydroxymethylation contributes to intestinal stem cell maintenance, epithelial differentiation, regeneration, and barrier integrity. Perturbations in TET activity are associated with epithelial dysfunction, chronic inflammation, and increased susceptibility to colorectal tumorigenesis. Within the immune compartment, TET-mediated demethylation is required for the epigenetic stabilization of gut-associated immune cells. Altered TET function has been implicated in immune imbalance in inflammatory bowel disease, Hirschsprung’s disease, and colitis-associated colorectal cancer. Emerging evidence further indicates that intestinal microbiota-derived metabolites, including short-chain fatty acids and aryl hydrocarbon receptor ligands, modulate TET activity, positioning TET enzymes as epigenetic sensors of microbial and metabolic signals. In turn, TET-dependent programs shape immune responses to commensal microbes and pathogens, establishing a bidirectional microbiota–epigenetic axis that influences both intestinal and systemic immunity. In this review, we summarize and critically evaluate current evidence on the roles of TET enzymes in intestinal epithelial biology, immune cell regulation, and host–microbiota interactions in colorectal inflammation and disease.
- Date of publication
- July 14, 2026
- Keyword
- cells
- epigenetic mechanisms
- cell regulation
- epithelial differentiation
- intestinal homeostasis
- DNA
- regulatory programs
- epithelium
- DNA hydroxymethylation
- family of dioxygenases
- intestinal immunity
- gut
- regeneration
- microbes
- Tet
- active DNA demethylation
- TET activity
- inflammatory bowel disease
- associated with epithelial dysfunction
- sensor
- interaction
- intestinal epithelium
- gene regulatory programs
- commensal microbes
- immune compartment
- metabolites
- tumorigenesis
- colorectal inflammation
- chronic inflammation
- immune cell regulation
- epigenetic integrity
- TET-mediated demethylation
- aryl
- cancer
- disease
- DNA demethylation
- homeostasis
- ten-eleven translocation family
- DNA methylation
- gut-associated immune cells
- colorectal tumorigenesis
- signal
- barrier integrity
- pathogens
- fatty acids
- immune tolerance
- metabolic signals
- Hirschsprung's disease
- susceptibility
- immunity
- aryl hydrocarbon receptor ligands
- integration
- methylation
- biology
- receptor ligands
- immune imbalance
- stem cell maintenance
- ligand
- cell maintenance
- intestinal stem cell maintenance
- hydroxymethyl
- demethylation
- maintenance
- dysfunction
- inflammatory balance
- immune cells
- axis
- program
- bowel disease
- host-microbiota interactions
- tolerance
- epigenetic stability
- acid
- TET function
- compartment
- mechanism
- activity
- differentiation
- microbiota-derived metabolites
- intestinal epithelial biology
- inflammation
- systemic immunity
- TET enzymes
- colorectal cancer
- dioxygenase
- function
- epithelial dysfunction
- enzyme
- evidence
- colitis-associated colorectal cancer
- perturbation
- Hirschsprung
- review
- balance
- imbalance
- short-chain fatty acids
- regulation
- barriers
- epithelial biology
- Identifier
- DOI: https://dx.doi.org/10.3390/jpm16070375
- Dimensions ID: pub.1203985817
- Resource type
- Article
- Rights statement
- In Copyright
- License
- Attribution 4.0 International
- Journal title
- Journal of Personalized Medicine
- Journal volume
- 16
- Journal issue
- 7
- Page start
- 375
- Version
- Publisher
- ISSN
- 2075-4426
- Publisher
- MDPI
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