PO.MCB09.02 · 分子与细胞生物学
PU-H71通过改变代谢抑制胰腺癌生长
PU-H71 alters metabolism to suppress growth in pancreatic cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胰腺导管腺癌(PDAC)是一种致死性癌症,治疗选择有限。致癌性KRAS信号传导(主要通过丝裂原活化蛋白激酶(MAPK)通路)是PDAC的关键驱动因素。为维持自身生长并抵抗治疗,PDAC肿瘤持续重编程其代谢活动。为鉴定能够破坏这些适应性生存活动的治疗药物,我们在两种PDAC细胞系中对超过2,000种化合物进行了高通量药物筛选。该筛选鉴定出PU-H71(一种选择性表观伴侣体和热休克蛋白90抑制剂)是PDAC活力的强效抑制剂。PU-H71在多种PDAC模型中降低了短期细胞生长并损害了克隆形成生存能力。代谢组学分析显示,PU-H71处理持续改变了细胞内氨基酸水平、关键生化通路中的代谢物,并导致细胞外代谢物发生显著变化,提示代谢物通量和利用发生了协调性改变。此外,用PU-H71处理PDAC细胞降低了mTOR相关信号组分的磷酸化,并抑制了MAPK信号通路。总之,这些发现表明PU-H71通过同时扰乱代谢编程和生长信号网络来破坏PDAC的生存。我们的结果确定PU-H71是一种有前景的治疗药物,可用于靶向促进PDAC生长和治疗抵抗的代谢与信号程序之间的交互作用。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) is a deadly cancer with limited therapeutic options. Oncogenic KRAS signaling, mainly via the mitogen-activated protein kinase (MAPK) pathway, is the key driver of PDAC. To sustain its growth and resist therapy, PDAC tumors continuously reprogram their metabolic activities. To identify therapeutic agents capable of disrupting these adaptive survival activities, we performed a high-throughput drug screen of >2,000 compounds in two PDAC cell lines. This screen identified PU-H71, a selective epichaperome and heat shock protein 90 inhibitor, as a potent suppressor of PDAC viability. PU-H71 reduced short-term cell growth and impaired clonogenic survival across multiple PDAC models. Metabolomics profiling revealed that treatment with PU-H71 consistently altered intracellular amino acid levels, metabolites in key biochemical pathways, and caused a significant shift in extracellular metabolites, suggesting coordinated changes in metabolite flux and utilization. Further, treatment of PDAC cells with PU-H71 reduced the phosphorylation of mTOR-associated signaling components and suppressed the MAPK signaling pathway. Together, these findings indicate that PU-H71 disrupts PDAC survival by simultaneously perturbing metabolic programming and growth signaling networks. Our results identify PU-H71 as a promising therapeutic agent for targeting the crosstalk between metabolism and signaling programs that promote PDAC growth and therapeutic resistance.
利益披露 Disclosure
C. J. Ezeh, None..
D. Binder, None..
L. Li, None..
Z. C. Nwosu, None.