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A TRIM15–CDX2 loop drives bile acid-induced gastric intestinal metaplasia

delete2026-08-06
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OA
AI
D
Dan Wang
J
Jian Chen
W
Wei Xu
S
Sachin Mulmi Shrestha
Q
Qin Lu
L
Lihua Ren
Q
Qinghua Ji
H
Hailu Wu *
R
Ruihua Shi *
DOI:10.1186/s10020-026-01578-2delete
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Abstract

Abstract

En 中文
Gastric intestinal metaplasia (GIM), a precancerous lesion and risk factor for gastric cancer, is closely associated with chronic bile acid (BA) exposure; however, its molecular mechanisms remain unclear. This study aimed to identify key regulators involved in BA-associated GIM and to elucidate their functional roles. TRIM15 and GIM markers (CDX2, MUC2, KLF4, and VIL1) were assessed in human GIM and paired normal tissues by RNA-seq, RT‒qPCR, Western blotting (WB), and immunofluorescence (IF). BA profiles were analyzed using UHPLC‒MS/MS. In vitro, GES-1 cells were treated with CDCA and subjected to TRIM15 gain- and loss-of-function assays. CDX2-mediated transcriptional regulation of TRIM15 was evaluated by dual-luciferase reporter and ChIP assays. NF-κB signaling and related proteins were assessed by WB and IF. The interaction between TRIM15 and IκBα and the levels of ubiquitination were investigated by coimmunoprecipitation, LC–MS/MS and protein–protein docking analysis. Functional assays were used to assess proliferation and apoptosis. In vivo validation was performed using an AAV9-mediated TRIM15 knockdown rat model. TRIM15 expression was consistently upregulated in GIM and increased stepwise with disease severity, accompanied by a positive association with CDX2 expression. BA profiling revealed the selective enrichment of cholic acid (CA) and chenodeoxycholic acid (CDCA), which induced GIM-associated phenotypes in vitro. Mechanistically, CDX2 directly bound to the TRIM15 promoter to increase its transcription, whereas TRIM15 promoted CDX2 expression via the NF-κB pathway, resulting in the formation of a regulatory loop. Further mechanistic analyses revealed that TRIM15 promoted K48-linked ubiquitination and subsequent proteasomal degradation of IκBα, thereby enhancing p65 phosphorylation. Notably, this effect was abolished by expression of the degradation-resistant IκBα S32A/S36A mutant. In vivo, TRIM15 knockdown attenuated gastric mucosal injury and intestinal metaplasia and reduced NF-κB signaling and CDX2 expression. These findings suggest the involvement of a TRIM15–NF-κB–CDX2 regulatory loop in BA-associated GIM. TRIM15 may contribute to epithelial reprogramming under BA exposure and could be a potential biomarker and therapeutic target for GIM progression.
Keywords:
Gastric intestinal metaplasia
Bile acid
TRIM15
CDX2
NF-κB
IκBα
Ubiquitination

Journal

Molecular Medicine cover
Molecular Medicine
IF:
6.4
Papers:
3.2K
Citations:
8.3K

Organization

S
school of medicine
Scholars:
3.5K
Papers: 1.2K
Citations: 0
Z
zhongda hospital
Scholars:
234
Papers: 71
Citations: 0
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