PO.MCB09.05 · 分子与细胞生物学

靶向PGK1可增强enzalutamide在耐药性前列腺癌中的疗效

Targeting PGK1 enhances enzalutamide efficacy in resistant prostate cancer

海报缩略图:靶向PGK1可增强enzalutamide在耐药性前列腺癌中的疗效
编号 4739 展板 12 时间 4/21 09:00–12:00 区域 Section 23 主讲 Min Zhang, MS
分会场 Metabolic Features of Thoracic and Urologic Cancers
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作者与单位 Authors & Affiliations

Min Zhang, Ruixin Wang, Xiaoqi Liu

Toxicology and Cancer Biology, Univ. of Kentucky College of Medicine, Lexington, KY

摘要 Abstract

中文摘要
Enzalutamide是晚期前列腺癌(PCa)标准的AR靶向治疗药物,然而固有性和获得性耐药仍是实现持久应答的主要障碍。为鉴定enzalutamide敏感性的调控因子,我们在具有固有耐药性的22Rv1细胞系中进行了全激酶组CRISPR-Cas9敲除筛选。磷酸甘油酸激酶1(PGK1)是一种关键的糖酵解酶,成为负向选择最显著的基因之一,表明其缺失可增加enzalutamide的敏感性。PGK1抑制或基因敲除可降低22Rv1细胞的活力、集落形成、迁移和侵袭能力,验证了其在维持耐药性PCa侵袭表型中的作用。对PGK1敲低细胞的Bulk RNA-seq分析显示AR信号通路活性增强,提示代谢紊乱后发生了代偿性AR再激活。联合MTT实验显示PGK1抑制与enzalutamide之间具有协同疗效,支持一种增强AR导向治疗应答的代谢-激素相互作用。机制上,Seahorse分析表明PGK1抑制可降低耐药性PCa细胞的糖酵解速率,提示代谢代偿受损可能是致敏的潜在机制。未来工作包括使用22Rv1和LNCaP PDX模型的异种移植研究、ATP通量测定、线粒体应激试验、脂质代谢及通路水平分析。这些发现将PGK1确定为一种代谢脆弱性,并突显其在克服晚期前列腺癌enzalutamide耐药方面的治疗潜力。
查看英文原文 English abstract
Enzalutamide is a standard AR-targeting therapy for advanced prostate cancer (PCa), yet intrinsic and acquired resistance remain major barriers to durable response. To identify regulators of enzalutamide sensitivity, we performed a kinome-wide CRISPR-Cas9 knockout screen in the intrinsically resistant 22Rv1 cell line. Phosphoglycerate kinase 1 (PGK1), a key glycolytic enzyme, emerged as a top negatively selected gene, indicating that its loss increases enzalutamide susceptibility. PGK1 inhibition or genetic deletion reduced viability, colony formation, migration, and invasion in 22Rv1 cells, validating its role in maintaining the aggressive phenotype of resistant PCa. Bulk RNA-seq analysis of PGK1 knockdown cells revealed increased AR signaling pathway activity, suggesting compensatory AR reactivation following metabolic disruption. Combination MTT assays showed synergistic efficacy between PGK1 inhibition and enzalutamide, supporting a metabolic-hormonal interaction that enhances AR-directed therapy response. Mechanistically, Seahorse analysis demonstrated that PGK1 inhibition decreases glycolytic rate in resistant PCa cells, indicating impaired metabolic compensation as a potential mechanism of sensitization. Future work includes xenograft studies using 22Rv1 and LNCaP PDX models, ATP flux assays, mitochondrial stress test, lipid metabolism, and pathway-level analysis. These findings identify PGK1 as a metabolic vulnerability and highlight its therapeutic potential to overcome enzalutamide resistance in advanced prostate cancer.
利益披露 Disclosure
M. Zhang, None.. R. Wang, None.. X. Liu, None.

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