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Updated: Feb 6, 2026

Intestinal Epithelial Regeneration in Response to Ionizing Irradiation
Published on: July 27, 2022
Stat3 is indispensable for damage-induced crypt regeneration but not for Wnt-driven intestinal tumorigenesis
Hiroko Oshima1,2, Sau-Yee Kok1, Mizuho Nakayama1,2
1Division of Genetics, Cancer Research Institute, Kanazawa University, Kanazawa, Japan.
Abstract:
Signal transducer and activator of transcription 3 (Stat3) has been shown to play a role in intestinal regeneration and colitis-associated colon carcinogenesis. However, the role of Stat3 in the Wnt-driven sporadic intestinal tumorigenesis remains poorly understood. We examined the roles of Stat3 in intestinal regeneration and tumorigenesis by organoid culture experiments using Stat3∆IEC mouse-derived intestinal epithelial cells in which Stat3 was disrupted. The regeneration of intestinal mucosa and organoid formation were significantly suppressed by Stat3 disruption, which was compensated by Wnt activation. Furthermore, once organoids were recovered, Stat3 was no longer required for organoid growth. These results indicate that Stat3 and Wnt signaling cooperatively protect epithelial cells at the early phase of intestinal regeneration. In contrast, intestinal tumorigenesis was not suppressed by Stat3 disruption in adenomatous polyposis coli ( Apc) Δ716 and Apc∆716 Tgfbr2∆IEC mice, thus indicating that Stat3 is not required for Wnt activation-driven intestinal tumorigenesis. Mechanistically, Itga5 and Itga6 were down-regulated by Stat3 disruption, and focal adhesion kinase (FAK) activation was also suppressed. Notably, FAK inhibitor suppressed the organoid formation of wild-type epithelial cells. These results indicate that Stat3 is indispensable for the survival of epithelial cells through the activation of integrin signaling and the downstream FAK pathway; however, it is not required for the Wnt signaling-activated normal or tumor epithelial cells.-Oshima, H., Kok, S.-Y., Nakayama, M., Murakami, K., Voon, D. C.-C., Kimura, T., Oshima, M. Stat3 is indispensable for damage-induced crypt regeneration but not for Wnt-driven intestinal tumorigenesis.
Insights
Signal transducer and activator of transcription 3 (Stat3) is vital for intestinal regeneration by supporting epithelial cell survival via integrin-FAK signaling. However, Stat3 is not essential for Wnt-driven intestinal tumor formation.
Area of Science:
- Gastroenterology
- Molecular Biology
- Oncology
Background:
- Signal transducer and activator of transcription 3 (Stat3) influences intestinal regeneration and colitis-associated cancer.
- The specific role of Stat3 in Wnt-driven sporadic intestinal tumorigenesis is not well understood.
Purpose of the Study:
- To investigate the function of Stat3 in intestinal regeneration and Wnt-driven tumorigenesis.
- To elucidate the molecular mechanisms underlying Stat3's role in epithelial cell survival and intestinal organoid formation.
Main Methods:
- Organoid culture using Stat3-disrupted intestinal epithelial cells (Stat3∆IEC).
- Analysis of Stat3's role in ApcΔ716 and Apc∆716 Tgfbr2∆IEC mouse models of intestinal tumorigenesis.
- Assessment of integrin (Itga5, Itga6) and focal adhesion kinase (FAK) pathway activation.
Main Results:
- Stat3 disruption significantly suppressed intestinal mucosa regeneration and organoid formation, an effect compensated by Wnt activation.
- Stat3 was not required for Wnt-driven intestinal tumorigenesis in Apc mutant mice.
- Stat3 disruption downregulated Itga5 and Itga6, suppressing FAK activation, which is crucial for organoid formation.
Conclusions:
- Stat3 is essential for epithelial cell survival during intestinal regeneration through integrin-FAK signaling.
- Stat3 is dispensable for Wnt-driven intestinal tumorigenesis, indicating distinct roles in regeneration versus tumor development.
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