生物
PARP1
DNA损伤
癌症研究
基因敲除
DNA修复
替莫唑胺
同源盒
化疗
分子生物学
DNA
基因
胶质母细胞瘤
下调和上调
细胞培养
遗传学
实时聚合酶链反应
污渍
突变
细胞生长
生存分析
基因表达调控
聚合酶链反应
抑癌基因
作者
Monia Russo,Elvia Valentini,Vincenza Aliperti,Federico Copparoni,Amanda Linkous,Claudia Montaldo,Silvia Soddu,Jean-Maxime Besson,Marie Lopez,Manuela Helmer Citterich,Alessandro Michienzi,Marco Tripodi,Silvia Anna Ciafrè,Silvia Galardi
出处
期刊:Cancer Letters
[Elsevier BV]
日期:2026-01-30
卷期号:642: 218284-218284
标识
DOI:10.1016/j.canlet.2026.218284
摘要
The most widely accepted hypothesis for glioblastoma development posits that glioblastoma stem-like cells (GSCs) play a central role in tumor initiation, recurrence, and resistance to both chemotherapy and radiotherapy. We and others previously showed the importance of Mesenchyme Homeobox 2 (MEOX2) in supporting GSC survival and metabolism. In the present work, we demonstrate that MEOX2 also promotes DNA damage repair and contributes to resistance against genotoxic therapies in GSCs. Using a GLICO (GLioblastoma Cerebral Organoid) model, we show that MEOX2 knockdown impairs tumor growth and increases sensitivity to temozolomide (TMZ). Mechanistically, we find that MEOX2 depletion in 2D culture systems compromises genomic stability and impairs DNA repair. Co-immunoprecipitation and mass spectrometry analyses identified poly ADP-ribose polymerase 1 (PARP1) as a novel MEOX2 interactor. Consistent with this, MEOX2-depleted cells exhibit reduced PARylation levels and increased sensitivity to the PARP1 inhibitor Talazoparib, highlighting a potential therapeutic vulnerability. Altogether, our findings reveal a previously unrecognized role for MEOX2 in the DNA damage response of GSCs, particularly in promoting survival and recovery after chemotherapy and ionizing radiation. These results also suggest that MEOX2 functions as a partner of PARP1 and may represent a promising therapeutic target in GBM.
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