吉西他滨
胰腺癌
癌症研究
合成代谢
癌细胞
生物
化学
内科学
医学
癌症
内分泌学
作者
Surendra K. Shukla,Vinee Purohit,Kamiya Mehla,Venugopal Gunda,Nina V. Chaika,Enza Vernucci,Ryan J. King,Jaime Abrego,Gennifer D. Goode,Aneesha Dasgupta,Alysha L. Illies,Teklab Gebregiworgis,Bingbing Dai,Jithesh J. Augustine,Divya Murthy,Kuldeep S. Attri,Oksana Mashadova,Paul M. Grandgenett,Robert Powers,Quan P. Ly
出处
期刊:Cancer Cell
[Cell Press]
日期:2017-07-01
卷期号:32 (1): 71-87.e7
被引量:479
标识
DOI:10.1016/j.ccell.2017.06.004
摘要
Poor response to cancer therapy due to resistance remains a clinical challenge. The present study establishes a widely prevalent mechanism of resistance to gemcitabine in pancreatic cancer, whereby increased glycolytic flux leads to glucose addiction in cancer cells and a corresponding increase in pyrimidine biosynthesis to enhance the intrinsic levels of deoxycytidine triphosphate (dCTP). Increased levels of dCTP diminish the effective levels of gemcitabine through molecular competition. We also demonstrate that MUC1-regulated stabilization of hypoxia inducible factor-1α (HIF-1α) mediates such metabolic reprogramming. Targeting HIF-1α or de novo pyrimidine biosynthesis, in combination with gemcitabine, strongly diminishes tumor burden. Finally, reduced expression of TKT and CTPS, which regulate flux into pyrimidine biosynthesis, correlates with better prognosis in pancreatic cancer patients on fluoropyrimidine analogs.
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