PO.ET05.01 · 实验与分子治疗

SQLE抑制剂通过引起ER应激触发卵巢癌细胞凋亡

SQLE inhibitor triggers ovarian cancer apoptosis by causing ER stress

海报缩略图:SQLE抑制剂通过引起ER应激触发卵巢癌细胞凋亡
编号 5694 展板 10 时间 4/21 02:00–05:00 区域 Section 12 主讲 Cheng Chi, MS
分会场 Mechanisms of Anticancer Drug Action
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Cheng Chi1, Lei Sun2, Mahmuda Akter1, Shuang Huang1

1University of Florida, Gainesville, FL,2University of Florida College of Medicine, Gainesville, FL

摘要 Abstract

中文摘要
高级别浆液性卵巢癌(HGSOC)由于诊断较晚和化疗耐药频率高而仍然高度致命,这凸显了识别可作为治疗靶点的新代谢弱点的必要性。本研究探讨了抑制角鲨烯环氧化酶(SQLE,胆固醇生物合成通路中将角鲨烯转化为2,3-环氧角鲨烯的限速酶)抑制卵巢癌细胞生长的机制,并评估了SQLE抑制剂NB-598的治疗潜力。我们使用在胆固醇充足和胆固醇耗竭条件下培养的卵巢癌细胞系,进行了细胞生长实验、ER应激信号通路的Western blot分析以及细胞凋亡实验。NB-598在胆固醇耗竭条件下选择性抑制卵巢癌细胞生长,而这一效应可被补充胆固醇完全逆转。值得注意的是,用阿托伐他汀抑制上游的HMG-CoA还原酶消除了NB-598诱导的生长抑制,提示NB-598的细胞毒性并非源于胆固醇缺乏,而是源于角鲨烯的蓄积。与此一致,ER应激标志物的激活以及JNK和p38抑制剂的挽救作用表明ER应激信号参与了NB-598诱导的毒性。通过细胞周期分析、Annexin V/PI染色和Western blot证实了细胞凋亡,显示NB-598处理的细胞中sub-G1群体增加、早期和晚期凋亡细胞升高,以及PARP和caspase-3的切割。总之,这些发现确定角鲨烯蓄积而非胆固醇耗竭是NB-598诱导卵巢癌细胞毒性的主要驱动因素。这项工作确立了SQLE作为卵巢癌中机制明确的代谢靶点,并为开发SQLE抑制剂作为新型治疗策略提供了有力依据。
查看英文原文 English abstract
High-grade serous ovarian cancer (HGSOC) remains highly lethal due to late diagnosis and the high frequency of chemoresistance, underscoring the need to identify new metabolic vulnerabilities that can be therapeutically targeted. This study investigates the mechanism through which inhibition of squalene epoxidase (SQLE), a rate-limiting enzyme that converts squalene to 2,3-epoxysqualene in the cholesterol biosynthesis pathway, suppresses ovarian cancer cell growth, and evaluates the therapeutic potential of the SQLE inhibitor NB-598. Using ovarian cancer cell lines cultured under cholesterol-replete and cholesterol-depleted conditions, we performed cell growth assays, western blot analysis of ER-stress signaling pathways, and apoptosis assays. NB-598 selectively inhibited ovarian cancer cell growth under cholesterol-depleted conditions, and this effect was fully reversed by cholesterol supplementation. Notably, inhibition of upstream HMG-CoA reductase with atorvastatin abolished NB-598-induced growth suppression, suggesting that NB-598 cytotoxicity does not stem from cholesterol deprivation but instead from the accumulation of squalene. Consistently, activation of ER-stress markers and rescue by JNK and p38 inhibitors implicate ER-stress signaling in NB-598-induced toxicity. Apoptosis was confirmed by cell-cycle analysis, Annexin V/PI staining, and western blotting, demonstrating increased sub-G1 populations, elevated early and late apoptotic cells, and cleavage of PARP and caspase-3 in NB-598-treated cells. Together, these findings identify squalene accumulation, rather than cholesterol depletion, as the primary driver of NB-598-induced cytotoxicity in ovarian cancer cells. This work establishes SQLE as a mechanistically defined metabolic target in ovarian cancer and provides a strong rationale for developing SQLE inhibitors as a novel therapeutic strategy.
利益披露 Disclosure
C. Chi, None.. S. Huang, None.

← 返回 AACR 2026 检索