癌症研究
基因敲除
生物
端粒
表观遗传学
MAPK/ERK通路
体外
调解人
DNA损伤
细胞生物学
DNA甲基化
基因组
发起人
分子生物学
激酶
黑色素瘤
下调和上调
转录调控
突变
细胞生长
作者
Zhuonan Pu,Jinqiu Liu,Y F Deng,Shuyu Hao,Xiaoli Zhang,Mingxu Yang,Chao Guo,Chao Du,Yuehua Chen,Tai Sun,Nan Ji,Zhengping Zhuang,J N Feng
摘要
ABSTRACT TP53 mutations (TP53mut) are associated with therapeutic resistance in glioblastoma (GBM) patients, yet the underlying mechanisms remain incompletely understood. Here, we identified an association between reduced P53 function and increased expression of the epigenetic regulator TET1 in GBM models. In TP53mut GBM cells, TET1 knockdown influenced genome fragility, including DNA damage, senescence, and telomere shortening. Specifically, our findings are consistent with a model in which TET1 binds to the ROS1 promoter and may help maintain ROS1 expression, likely by keeping the promoter in a hypomethylated state, along with downstream ERK phosphorylation. Conversely, inhibiting TET1 correlates with reduced ROS1 expression, attenuation of ERK signaling, and increased genome fragility. Furthermore, TET1 depletion in tumor cells was associated with altered tumor‐associated macrophages biology both in vitro and in vivo, including increased infiltration, differentiation, M1‐like polarization, and phagocytic capacity. Notably, combining the TET1 inhibitor Bobcat339 with cisplatin synergistically inhibited TP53mut GBM growth in vitro and in vivo, improving survival without significant toxicity. Our findings suggest that TET1 may serve as a potential mediator of therapy resistance and a promising therapeutic target in TP53mut GBM.
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