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ALKBH5 in Cancer-Associated Fibroblasts Governs an Epitranscriptomic Axis That Drives Pancreatic Cancer Metastasis

生物 癌症研究 胰腺癌 间质细胞 转移 肿瘤微环境 脱甲基酶 肿瘤进展 癌症 调节器 细胞生物学 癌细胞 转录组 基因表达调控 转录因子 细胞迁移 基质 癌基因 腺癌 癌相关成纤维细胞 上皮-间质转换 细胞 聚束蛋白 胰腺 增强子 下调和上调 体外 信号转导 细胞生长 重编程 表型 基因表达谱 胰腺上皮内瘤变
作者
Xianglin Yin,Xiao-ding Liu,Lulu Cheng,Lin Yang,Yujie Fu,Yifan Li,Mengqi Chang,Lingfeng Xiao,Zhenli Yang,Bohan Liu,Jun Wang,Xuqing Shi,Xinyi Ke,Qixian Liu,Hangqi Liu,Tianqi Liu,Mu Zhang,Yuhan Zhang,Longyun Chen,Junyi Pang
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:: OF1-OF22
标识
DOI:10.1158/0008-5472.can-25-2950
摘要

Abstract Cancer-associated fibroblasts (CAF) are principal determinants of pancreatic ductal adenocarcinoma (PDAC) progression. CAFs can shape tumor behavior via multiple pathways, underscoring the need for a complete understanding of the regulatory mechanisms that govern CAF function. In this study, we identified N6-methyladenosine (m6A) remodeling as a hallmark of CAF activation and defined a critical role for the m6A demethylase ALKBH5 in PDAC metastasis. Activated CAFs exhibited a global reduction in m6A abundance, with ALKBH5 emerging as a key regulator of the CAF epitranscriptome. Functionally, CAF-derived ALKBH5 enhanced pancreatic cancer cell migration and invasion in vitro and promoted epithelial–mesenchymal transition–associated gene expression in tumor cells in an m6A-dependent manner. Orthotopic co-implantation models and host genetic ablation models demonstrated that ALKBH5 plays a critical role in metastatic dissemination, with minimal impact on primary tumor growth. Mechanistically, ALKBH5 enhanced the m6A-dependent translation of HSF1 in CAFs, at least in part by relieving insulin-like growth factor 2 mRNA-binding protein 3–associated translational constraints. Elevated HSF1 subsequently activated leukemia-inhibitory factor (LIF) transcription through distal enhancer elements, establishing an ALKBH5–HSF1–LIF signaling axis that mediated the prometastatic CAF–tumor cell communication. Clinically, enrichment of ALKBH5+HSF1+ CAFs independently predicted poor prognosis and was preferentially observed in metastatic PDAC. Collectively, these findings uncover a CAF-intrinsic epitranscriptomic program that drives PDAC metastasis and highlight stromal m6A regulation as a potential therapeutic vulnerability. Significance: Cancer-associated fibroblast-intrinsic ALKBH5 facilitates metastatic dissemination in pancreatic ductal adenocarcinoma via m6A-dependent HSF1–LIF paracrine signaling, uncovering a stroma-specific vulnerability with therapeutic relevance in pancreatic cancer.
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