重编程
细胞生物学
表观遗传学
细胞外基质
前列腺癌
线粒体
化学
生物
HEK 293细胞
癌症研究
河马信号通路
核心
刚度
下调和上调
基质(化学分析)
细胞质
癌细胞
癌症
前列腺
MFN1型
线粒体融合
基因表达调控
融合基因
融合蛋白
过度活跃
DNA损伤
细胞外
泛素
自愈水凝胶
信号转导
作者
Peng Wu,Sicheng Wang,Zanmin Hu,Haoyan Zhang,Yuqing Lin,Zhenggang Li,Jiahong Wu,Yani Chen,Yujie Chen,Yuandong Xu,Jun Li,Yupeng Guan
出处
期刊:iScience
[Cell Press]
日期:2025-11-11
卷期号:28 (12): 113996-113996
被引量:6
标识
DOI:10.1016/j.isci.2025.113996
摘要
Chemoresistance remains a major obstacle in prostate cancer therapy. This study demonstrates that high extracellular matrix stiffness promotes chemoresistance by disrupting mitochondrial-nuclear communication. Culturing prostate cancer cells on polyacrylamide hydrogels of varying stiffness revealed that a high-stiffness environment promotes mitochondrial fusion and enhances function. Mechanistic investigations revealed that high matrix stiffness activates YAP, leading to dysregulation of the Hippo signaling pathway, which subsequently upregulates the expression of OPA1 and induces mitochondrial fusion. This fusion triggers a reprogramming of glutamine metabolism. The resulting metabolite, α-ketoglutarate, activated DNA demethylases TET1 and TET3, causing epigenetic modifications of YAP target genes and further exacerbating Hippo pathway dysregulation. Together, this establishes a YAP-OPA1-TET1/3-mediated positive feedback loop between the nucleus and mitochondria that drives drug resistance. Crucially, targeting OPA1 disrupted this loop and reversed stiffness-induced chemoresistance. These findings reveal a novel mitochondrial-nuclear communication, offering new insights for overcoming chemoresistance in prostate cancer.
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