1
Return

Targeting E2F8 sensitizes gemcitabine-resistant gallbladder cancer to PARP inhibitors by disrupting RRM2-driven DNA repair

delete2025-12-14
delete0
delete
OA
AI
X
Xiaojian Ni
李民 cover
李民 (Min Li)
W
Wenqing Qiu
J
Jichang Han
Y
Yu Meng
S
Shulong Zhang
B
Bohao Zheng
J
Jiaqi He *
H
Houbao Liu *
DOI:10.1186/s13046-025-03586-2delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Gallbladder cancer (GBC) is an aggressive malignancy with limited therapeutic options, primarily due to the frequent emergence of resistance to gemcitabine-based chemotherapy. Uncovering molecular mechanisms underlying this resistance is essential for developing more effective treatments. Gemcitabine-resistant GBC cell lines were generated and subjected to transcriptomic sequencing to identify resistance-associated genes. A genome-wide CRISPR-Cas9 knockout screen was used to pinpoint key genetic regulators. Functional validation was performed through gene knockdown and overexpression, cell viability and apoptosis assays, colony formation, and DNA damage analysis. A high-throughput virtual screening (HTVS) approach was applied to identify small-molecule inhibitors targeting the E2F8-DNA interaction. The efficacy of selected compounds was tested in vitro and in xenograft mouse models, and further validated using patient-derived organoids (PDOs) established from primary and recurrent gallbladder cancers. The transcription factor E2F8 was identified as a driver of gemcitabine resistance via upregulation of RRM2, a gene involved in DNA repair. Knockdown of E2F8 enhanced sensitivity to poly (ADP-ribose) polymerase (PARP) inhibitors in resistant GBC cells by impairing DNA repair. HTVS yielded HIT-4, a small-molecule inhibitor that binds to E2F8 and disrupts its interaction with DNA, leading to reduced RRM2 expression. HIT-4 significantly increased apoptosis and DNA damage when combined with PARP inhibitors. In vivo and in PDO models, HIT-4 and PARP inhibitor co-treatment markedly suppressed tumor growth, extended survival, and showed minimal toxicity. This study identifies the E2F8-RRM2 axis as a key regulator of gemcitabine resistance in GBC and establishes E2F8 as a druggable target. The novel compound HIT-4, in combination with PARP inhibitors, represents a promising therapeutic strategy to overcome chemoresistance and warrants further clinical investigation.
Keywords:
Gallbladder cancer
Gemcitabine resistance
E2F8
RRM2
PARP inhibitor
DNA damage repair
Patient-derived organoids
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

J
Journal of Experimental and Clinical Cancer Research
IF:
12.8
Papers:
4.4K
Citations:
2.9W

Organization

D
Department of General Surgery
Scholars:
1.8K
Papers: 655
Citations: 0
D
department of huadong hospital
Scholars:
1
Papers: 1
Citations: 0
H
Hangzhou Institute for Advanced Study
Scholars:
153
Papers: 70
Citations: 0
Z
Zhongshan Hospital
Scholars:
1.2K
Papers: 351
Citations: 1.5W
Cited Papers

Cited Papers

Citing Papers

Citing Papers