线粒体生物发生
基因敲除
转录因子
生物
癌症研究
顺铂
线粒体
分子生物学
细胞生物学
基因
遗传学
化疗
作者
Vicky Yao,Tong Zhang,Xueyuan Jia,Fei Xi,Wanting Jing,Yusi Wang,Min Huang,Ruisi Na,Lidan Xu,Wei Ji,Yuandong Qiao,Xuelong Zhang,Wenjing Sun,Shuijie Li,Jie Wu
标识
DOI:10.1016/j.bbadis.2024.167497
摘要
Chemotherapeutic resistance is a major obstacle to the effectiveness of cisplatin-based chemotherapy for gastric cancer (GC), leading to treatment failure and poor survival rates. However, the underlying mechanisms are not fully understood. Our study demonstrated that the transcription factor myocyte enhancer factor 2A (MEF2A) plays a role in chemotherapeutic drug resistance by regulating the transcription of PGC1α and KEAP1, promoting mitochondrial biogenesis. It was found that increased MEF2A expression is linked with poor prognosis, cisplatin insensitivity, and mitochondrial function in GC. MEF2A overexpression significantly decreases GC cell sensitivity in vitro and in vivo, while MEF2A knockdown enhances the sensitivity to cisplatin. Mechanistically, MEF2A activates the transcription of PGC1α, leading to increased mitochondrial biogenesis. In addition, MEF2A inhibits KEAP1 transcription, reduces NRF2 ubiquitination degradation, and activates the KEAP1/NRF2 signaling pathway, which modulates the reactive oxygen species level. The present study identifies a new critical oncogene involved in GC chemoresistance, suggesting a novel therapeutic target for GC.
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