重编程
XRCC1型
胶质母细胞瘤
生物
癌症研究
医学
遗传学
细胞
基因
基因型
单核苷酸多态性
作者
LI Guan-zhang,Di Wang,You Zhai,Changqing Pan,Jiazheng Zhang,Sheng Wang,Ruoyu Huang,Mingchen Yu,Yiming Li,Xing Liu,Yanwei Liu,Fan Wu,Zheng Zhao,Huimin Hu,Zhongfang Shi,Ulf D. Kahlert,Tao Jiang,Wei Zhang
出处
期刊:Cell Metabolism
[Elsevier]
日期:2024-08-01
卷期号:36 (8): 1696-1710.e10
被引量:5
标识
DOI:10.1016/j.cmet.2024.07.011
摘要
Patients with high ALDH1A3-expressing glioblastoma (ALDH1A3hi GBM) show limited benefit from postoperative chemoradiotherapy. Understanding the mechanisms underlying such resistance in these patients is crucial for the development of new treatments. Here, we show that the interaction between ALDH1A3 and PKM2 enhances the latter's tetramerization and promotes lactate accumulation in glioblastoma stem cells (GSCs). By scanning the lactylated proteome in lactate-accumulating GSCs, we show that XRCC1 undergoes lactylation at lysine 247 (K247). Lactylated XRCC1 shows a stronger affinity for importin α, allowing for greater nuclear transposition of XRCC1 and enhanced DNA repair. Through high-throughput screening of a small-molecule library, we show that D34-919 potently disrupts the ALDH1A3-PKM2 interaction, preventing the ALDH1A3-mediated enhancement of PKM2 tetramerization. In vitro and in vivo treatment with D34-919 enhanced chemoradiotherapy-induced apoptosis of GBM cells. Together, our findings show that ALDH1A3-mediated PKM2 tetramerization is a potential therapeutic target to improve the response to chemoradiotherapy in ALDH1A3hi GBM.
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