Cytoplasmic p53 couples oncogene-driven glucose metabolism to apoptosis and is a therapeutic target in glioblastoma

细胞质 p53 将致癌基因驱动的葡萄糖代谢与细胞凋亡联系起来,是胶质母细胞瘤的治疗靶点

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作者:Wilson X Mai, Laura Gosa, Veerle W Daniels, Lisa Ta, Jonathan E Tsang, Brian Higgins, W Blake Gilmore, Nicholas A Bayley, Mitra Dehghan Harati, Jason T Lee, William H Yong, Harley I Kornblum, Steven J Bensinger, Paul S Mischel, P Nagesh Rao, Peter M Clark, Timothy F Cloughesy, Anthony Letai, David A

Abstract

Cross-talk among oncogenic signaling and metabolic pathways may create opportunities for new therapeutic strategies in cancer. Here we show that although acute inhibition of EGFR-driven glucose metabolism induces only minimal cell death, it lowers the apoptotic threshold in a subset of patient-derived glioblastoma (GBM) cells. Mechanistic studies revealed that after attenuated glucose consumption, Bcl-xL blocks cytoplasmic p53 from triggering intrinsic apoptosis. Consequently, targeting of EGFR-driven glucose metabolism in combination with pharmacological stabilization of p53 with the brain-penetrant small molecule idasanutlin resulted in synthetic lethality in orthotopic glioblastoma xenograft models. Notably, neither the degree of EGFR-signaling inhibition nor genetic analysis of EGFR was sufficient to predict sensitivity to this therapeutic combination. However, detection of rapid inhibitory effects on [18F]fluorodeoxyglucose uptake, assessed through noninvasive positron emission tomography, was an effective predictive biomarker of response in vivo. Together, these studies identify a crucial link among oncogene signaling, glucose metabolism, and cytoplasmic p53, which may potentially be exploited for combination therapy in GBM and possibly other malignancies.

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