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5-HT2B-mediated serotonin activation in enterocytes suppresses colitis-associated cancer initiation and promotes
Liyuan Mao1, Fang Xin1, Jie Ren2
1Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Capital Medical University, Beijing, China.
Abstract:
Rationale: Serotonin (5-hydroxytryptamine, 5-HT) is generally considered to be involved in colitis-associated cancer (CAC), but previous research has yielded inconsistent results regarding the effect of 5-HT on CAC. 5-HT2B is one of the receptors of 5-HT, and the receptor is expressed in intestinal epithelial cells (IECs). However, the functions of 5-HT2B in CAC remain unclear. Our work demonstrates the variable functions of 5-HT/5-HT2B signaling in the initiation and progression of CAC in mice. Methods: We constructed two types of mutant mice homozygous knockout of Htr2b, the gene encoding 5-HT2B, in IECs (Htr2bΔIEC and Htr2bΔIEC-ER) to study the role of 5-HT2B in AOM/DSS-induced CAC model. Inflammation was measured using the body weight, colon length, and colitis severity score, and by histologic analysis of colon tissues. Tumor severity was assessed by tumor quantity, load, and histologic analysis of colon tumor tissues. Results: In Htr2bΔIEC mice, AOM/DSS induced an enhancement of colitis and tumor severity. This process was due to the inhibition of TGF-β/SMAD signaling pathway and activation of IL-6/STAT3 signaling pathway. IL-6 antibody treatment reversed the stimulating effect of Htr2b deletion on tumorigenesis. However, tumor severity decreased in Htr2bΔIEC-ER mice injected with tamoxifen on day 48 of AOM/DSS treatment. Knockout Akt1 eliminated the function of 5-HT in promoting tumor cells. Conclusion: Our work elucidates 5-HT/5-HT2B/TGF-β signaling as a critical tumor suppressing axis during CAC initiation but as a promoter of cancer progression in the late-stage of CAC. Our findings provide a new understanding of the role of 5-HT in the initiation and progression of CAC, offering a new perspective on the long-standing debate on whether the 5-HT signal promotes or inhibits tumors.
Insights
Serotonin (5-HT) and its receptor 5-HT2B show dual roles in colitis-associated cancer (CAC). Initially, they suppress tumors, but later promote cancer progression, impacting TGF-β and IL-6 pathways.
Area of Science:
- Gastroenterology and Oncology
- Molecular Biology and Signaling Pathways
Background:
- The role of serotonin (5-hydroxytryptamine, 5-HT) in colitis-associated cancer (CAC) is debated, with inconsistent findings.
- The 5-HT2B receptor, expressed in intestinal epithelial cells (IECs), has an unclear function in CAC development.
- Understanding 5-HT/5-HT2B signaling is crucial for clarifying its impact on CAC initiation and progression.
Purpose of the Study:
- To investigate the specific functions of the 5-HT2B receptor in the initiation and progression of CAC.
- To elucidate the molecular mechanisms underlying the variable effects of 5-HT/5-HT2B signaling in a mouse model of CAC.
Main Methods:
- Utilized two types of mutant mice (Htr2bΔIEC and Htr2bΔIEC-ER) with homozygous knockout of the Htr2b gene in IECs.
- Induced CAC using the AOM/DSS model and assessed inflammation via body weight, colon length, and histology.
- Evaluated tumor severity through quantity, load, and histological analysis; investigated signaling pathways (TGF-β/SMAD, IL-6/STAT3) and Akt1.
Main Results:
- In Htr2bΔIEC mice, 5-HT2B deletion exacerbated colitis and tumor severity by inhibiting TGF-β/SMAD and activating IL-6/STAT3 signaling.
- IL-6 antibody treatment reversed the pro-tumorigenic effect of Htr2b deletion.
- Conversely, late-stage Htr2b deletion (Htr2bΔIEC-ER) reduced tumor severity, and Akt1 knockout abolished 5-HT's tumor-promoting function.
Conclusions:
- The 5-HT/5-HT2B/TGF-β axis acts as a tumor suppressor during CAC initiation but promotes cancer progression in later stages.
- This study reveals the context-dependent, dual role of 5-HT signaling in CAC, resolving long-standing debates.
- Findings offer novel insights into CAC pathogenesis and potential therapeutic targets related to the 5-HT pathway.
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