R406 elicits anti-Warburg effect via Syk-dependent and -independent mechanisms to trigger apoptosis in glioma stem cells

Given that glioma stem cells (GSCs) play a critical role in the initiation and chemoresistance in glioblastoma multiforme (GBM), targeting GSCs is an attractive strategy to treat GBM. Utilizing an anti-cancer compound library, we identified R406, the active metabolite of a FDA-approved Syk inhibitor...

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Veröffentlicht in:Cell death & disease 2019-05, Vol.10 (5), p.358, Article 358
Hauptverfasser: Sun, Shuxin, Xue, Dongdong, Chen, Zhijie, Ou-yang, Ying, Zhang, Ji, Mai, Jialuo, Gu, Jiayv, Lu, Wanjun, Liu, Xincheng, Liu, Wenfeng, Sheng, Longxiang, Lu, Bingzheng, Lin, Yuan, Xing, Fan, Chen, Zhongping, Mou, Yonggao, Yan, Guangmei, Zhu, Wenbo, Sai, Ke
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Sprache:eng
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Zusammenfassung:Given that glioma stem cells (GSCs) play a critical role in the initiation and chemoresistance in glioblastoma multiforme (GBM), targeting GSCs is an attractive strategy to treat GBM. Utilizing an anti-cancer compound library, we identified R406, the active metabolite of a FDA-approved Syk inhibitor for immune thrombocytopenia (ITP), with remarkable cytotoxicity against GSCs but not normal neural stem cells. R406 significantly inhibited neurosphere formation and triggered apoptosis in GSCs. R406 induced a metabolic shift from glycolysis to oxidative phosphorylation (OXPHOS) and subsequently production of excess ROS in GSCs. R406 also diminished tumor growth and efficiently sensitized gliomas to temozolomide in GSC-initiating xenograft mouse models. Mechanistically, the anti-GSC effect of R406 was due to the disruption of Syk/PI3K signaling in Syk-positive GSCs and PI3K/Akt pathway in Syk-negative GSCs respectively. Overall, these findings not only identify R406 as a promising GSC-targeting agent but also reveal the important role of Syk and PI3K pathways in the regulation of energy metabolism in GSCs.
ISSN:2041-4889
2041-4889
DOI:10.1038/s41419-019-1587-0