抑制器
脱氮酶
癌症研究
泛素
癌症
泛素连接酶
常用化疗药物
化疗
细胞凋亡
抑癌基因
发病机制
基因敲除
癌细胞
医学
生物
肿瘤微环境
下调和上调
细胞培养
伊立替康
癌变
作者
Zheming Wu,X. Tu,Shouhai Zhu,Qi Jiang,Liewei Wang,Kaixiong Tao,Zhenkun Lou,Min Deng,Xiangyu Zeng
标识
DOI:10.1038/s41467-025-66319-1
摘要
Gastric cancer (GC) ranks as the third leading cause of cancer-related mortality. Chemoresistance poses a major obstacle to successful treatment for GC patients. Here, we demonstrate that ferroptosis suppressor protein 1 (FSP1) enables chemoresistance in GC by inhibiting ferroptosis, resulting in diminished chemotherapy response and reduced patient survival rate. USP29 and SMURF1 are subsequently discovered as the deubiquitinase and E3 ligase of FSP1, respectively, orchestrating the ubiquitination of FSP1 to modulate ferroptosis and chemoresistance in GC. In the ubiquitination process, SMURF1 is observed to interact with and polyubiquitinate FSP1 within K63/K193 sites. Notably, pharmacological inhibition of FSP1 by iFSP1 is shown to synergize with chemotherapeutic agents across chemoresistant cellular and mouse models. Our findings thus underscore the pivotal role of the USP29 and SMURF1 in regulating GC chemoresistance via FSP1-mediated ferroptosis suppression. FSP1 inhibition may represent a promising therapeutic avenue to overcome chemoresistance in GC. Regulated cell death and its dysregulation may contribute to chemoresistance. Here, the authors show that Ferroptosis Suppressor Protein 1 (FSP1) promotes chemoresistance in gastric cancer in part by suppressing ferroptosis.
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