PO.ET03.02 · 实验与分子治疗

靶向琥珀酸脱氢酶损害ER+乳腺癌细胞的增殖

Targeting succinate dehydrogenase impairs the proliferation of ER+ breast cancer cells

海报缩略图:靶向琥珀酸脱氢酶损害ER+乳腺癌细胞的增殖
编号 1791 展板 11 时间 4/20 09:00–12:00 区域 Section 16 主讲 ANIL KUMAR Yadav, PhD
分会场 Mechanisms of Drug Resistance 2
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作者与单位 Authors & Affiliations

Anil Kumar Yadav, Lu Jin, Robert Clarke

The Hormel Institute, University of Minnesota, Austin, MN

摘要 Abstract

中文摘要
雌激素受体阳性(ER+)乳腺癌的内分泌治疗(ET)直接阻断雌激素生物合成(芳香化酶抑制剂)或雌激素受体功能(氟维司群或他莫昔芬)。然而,由于内在和获得性耐药,尽管持续进行ET,疾病进展常仍会恢复。琥珀酸脱氢酶(SDH)催化琥珀酸与富马酸之间的可逆转化。它包含四个不同的亚基以及SDH组装因子2(SDHAF2)。在我们的研究中,我们发现与LCC1或MCF-7(ET敏感细胞)相比,LCC9(ET耐药细胞)中SDH酶活性升高且SDHB(催化亚基)蛋白表达升高。与其亲本T47D-A18细胞(ET)相比,T47D-4HT(ET耐药)也显示出显著更高的SDHB蛋白水平。使用二甲基丙二酸(DMM)对SDH活性进行药理学抑制,可降低LCC9和T47D-4HT两者的细胞生长、集落和球体形成。DMM处理诱导了半胱天冬酶依赖的凋亡,并降低了LCC9和T47D-4HT细胞的线粒体膜电位。重要的是,琥珀酸积累伴随着HIF1-alpha的稳定化,而SDH抑制导致HIF1-alpha水平降低,这表明SDH在LCC9细胞中可能发挥将富马酸转化为琥珀酸的功能。SDHB的基因敲除证实了SDH活性在LCC9和T47D-4HT细胞的生长、集落和球体形成中的重要性。综上所述,SDH酶活性对ET耐药的ER+乳腺癌细胞的增殖和线粒体功能至关重要。我们提出,SDH是ER+、内分泌治疗耐药乳腺癌的一个潜在的新型治疗靶点。
查看英文原文 English abstract
Endocrine therapies (ET) for estrogen receptor positive (ER+) breast cancer directly block either estrogen biosynthesis (aromatase inhibitors) or estrogen receptor function (Fulvestrant or tamoxifen). However, due to intrinsic and acquired resistance, disease progression often resumes despite continued ET. Succinate dehydrogenase (SDH) enzyme catalyzes the reversible conversion of succinate to fumarate. It contains four different subunits and SDH assembly factor 2 (SDHAF2). In our study, we found elevated SDH enzymatic activity and protein expression of SDHB (catalytic subunit) in LCC9 (ET-resistant cells) comparison with LCC1 or MCF-7 (ET-sensitive cells). T47D-4HT (ET-resistant) also showed significantly higher protein levels of SDHB in comparison with their parental T47D-A18 cells (ET). Pharmacological inhibition of SDH activity using dimethylmalonate (DMM) reduced cell growth, colony and spheroid formation in both LCC9 and T47D-4HT. DMM treatment induced caspase-dependent apoptosis and reduced mitochondrial membrane potential in both LCC9 and T47D-4HT cells. Importantly, succinate accumulation was accompanied by HIF 1-alpha stabilization and SDH inhibition led to lower levels of HIF1-alpha, which indicates that SDH may function in the conversion of fumarate to succinate in LCC9 cells. Genetic ablation of SDHB confirmed the importance of SDH activity in growth, colony and spheroid formation of LCC9 and T47D-4HT cells. Taken together, SDH enzymatic activity is crucial for the proliferation and mitochondrial function of ET-resistant ER+ breast cancer cells. We propose that SDH is a potentially novel therapeutic target for ER+, endocrine therapy resistant breast cancer.
利益披露 Disclosure
A. Yadav, None.

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