Helicobacter pylori ‐Induced Persistent IGF2BP1 Activation Promotes Ferroptosis Resistance in Gastric Tumorigenesis

ABSTRACT Helicobacter pylori ( H. pylori ) infection is a major risk factor for gastric cancer, yet how a transient bacterial insult induces durable oncogenic reprogramming in gastric epithelial cells remains incompletely understood. Here, we identify insulin‐like growth factor 2 mRNA‐binding protein 1 (IGF2BP1) as a key mediator of sustained ferroptosis resistance during gastric tumorigenesis. We show that H. pylori infection induces IGF2BP1 expression in gastric epithelial cells, murine models, and human gastric tissues, and that IGF2BP1 upregulation can persist following bacterial eradication, consistent with a potential “hit‐and‐run”‐like mode of epithelial reprogramming. Functionally, sustained IGF2BP1 expression promotes malignant cell survival and tumor growth by suppressing oxidative stress and ferroptosis. Mechanistically, IGF2BP1 functions as an N 6 ‐methyladenosine (m 6 A) reader that binds to and stabilizes SLC7A11 mRNA, a key regulator of cystine uptake and redox homeostasis, thereby conferring ferroptosis resistance. Importantly, pharmacological targeting of IGF2BP1 using BTYNB or Cucurbitacin B reduces tumor growth in xenograft models and decreases viability in patient‐derived gastric organoids. Together, these findings uncover a mechanism by which infection‐triggered epitranscriptomic reprogramming sustains ferroptosis resistance during gastric tumorigenesis and identify IGF2BP1 as a therapeutic target in gastric cancer.

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Publication Details

Journal
Advanced Science
Published
2026-09-11
DOI
https://doi.org/10.1002/advs.77677
Primary Topic
Ferroptosis and cancer prognosis
Type
article
Field-Weighted Citation Impact
0.00

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article

Helicobacter pylori ‐Induced Persistent IGF2BP1 Activation Promotes Ferroptosis Resistance in Gastric Tumorigenesis

Shigang Ding, Qiao Meng, Xinyu Hao, Zhi Huang et al.
Advanced Science
Ferroptosis and cancer prognosis
article

Helicobacter pylori ‐Induced Persistent IGF2BP1 Activation Promotes Ferroptosis Resistance in Gastric Tumorigenesis

Shigang Ding, Qiao Meng, Xinyu Hao, Zhi Huang, Ying Xiong, Jing Ning, Ming Zu, Xiangmei Chen, Deyao Li, Yanfei Lang, Fengmin Lu, Wenlin Zhang, Xiurui Han, Meiling Zhou, Jing Zhang, Weiwei Fu, Tong Liu, Xin Guan, Tinghui Qu, Mengjie Yang, Jing Zhang
article en

Abstract

ABSTRACT Helicobacter pylori ( H. pylori ) infection is a major risk factor for gastric cancer, yet how a transient bacterial insult induces durable oncogenic reprogramming in gastric epithelial cells remains incompletely understood. Here, we identify insulin‐like growth factor 2 mRNA‐binding protein 1 (IGF2BP1) as a key mediator of sustained ferroptosis resistance during gastric tumorigenesis. We show that H. pylori infection induces IGF2BP1 expression in gastric epithelial cells, murine models, and human gastric tissues, and that IGF2BP1 upregulation can persist following bacterial eradication, consistent with a potential “hit‐and‐run”‐like mode of epithelial reprogramming. Functionally, sustained IGF2BP1 expression promotes malignant cell survival and tumor growth by suppressing oxidative stress and ferroptosis. Mechanistically, IGF2BP1 functions as an N 6 ‐methyladenosine (m 6 A) reader that binds to and stabilizes SLC7A11 mRNA, a key regulator of cystine uptake and redox homeostasis, thereby conferring ferroptosis resistance. Importantly, pharmacological targeting of IGF2BP1 using BTYNB or Cucurbitacin B reduces tumor growth in xenograft models and decreases viability in patient‐derived gastric organoids. Together, these findings uncover a mechanism by which infection‐triggered epitranscriptomic reprogramming sustains ferroptosis resistance during gastric tumorigenesis and identify IGF2BP1 as a therapeutic target in gastric cancer.

Advanced Science
Peking University (CN), Peking University Third Hospital (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 11%
Ferroptosis and cancer prognosis
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