PO.ET03.02 · 实验与分子治疗

(Z)-endoxifen在ESR1突变型和内分泌耐药乳腺癌中的机制表征

Mechanistic characterization of (Z)-endoxifen in ESR1-mutant and endocrine-resistant breast cancer

海报缩略图:(Z)-endoxifen在ESR1突变型和内分泌耐药乳腺癌中的机制表征
编号 1784 展板 4 时间 4/20 09:00–12:00 区域 Section 16 主讲 Sandra Hammer
分会场 Mechanisms of Drug Resistance 2
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作者与单位 Authors & Affiliations

Sandra Suarez Hammer1, Alina Ustiugova2, Anastasia Shneyderman3, Alexander Veviorskiy2, Khadija M. Alawi2, Mikhail Korzinkin3, Lucia Beaulieu1, Hayley Erickson1, Scott M. Blackburn1, H. Lawrence Remmel4, Steven Quay1

1Atossa Therapeutics Inc., Seattle, WA,2Insilico Medicine AI Limited, Abu Dhabi, United Arab Emirates,3Insilico Medicine Hong Kong Ltd., Hong Kong, China,4University Medical Center Utrecht, Utrecht, Netherlands

摘要 Abstract

中文摘要
背景:ESR1突变(如Y537S和D538G)驱动配体非依赖性的ER激活以及ER阳性乳腺癌中的耐药。(Z)-endoxifen是他莫昔芬(tamoxifen)的活性代谢产物,可抑制ER信号,但其对ESR1突变型信号和治疗耐药性疾病的影响尚未完全阐明。 方法:将HEK293T细胞与ESR1-WT或突变型质粒连同ERE-荧光素酶报告基因和Renilla对照共同转染。24小时后,用endoxifen、elacestrant(10 μM-0.01 nM)或0.1% DMSO处理细胞另24小时。将萤火虫荧光素酶活性归一化至Renilla,使用来自三次独立实验的均值±SD值绘制剂量反应曲线。对来自PandaOmics的166份ESR1 Y537S和45份ESR1-WT MCF-7样本进行转录组分析,并使用27份处理样本和25份未处理样本、经limma和gseapy处理来评估endoxifen处理后的差异表达。血浆和肿瘤样本用甲醇沉淀法加氘代endoxifen-d₅提取,并在Poroshell 120 EC-C18色谱柱上通过UPLC-MRM使用六点校准曲线进行定量。 结果:(Z)-endoxifen(ENDO)和elacestrant(ELAC)在野生型和突变型ESR1构建体中均产生对ER信号的剂量依赖性抑制。在100 nM时,ENDO和ELAC对WT和三种常见ESR1突变体表现出相当的抑制作用,这与服用20 mg他莫昔芬的女性中约80 nM的稳态ENDO血浆水平一致。在较高剂量下,ENDO比ELAC更有效地抑制Y537S和D538G。转录组分析显示,ENDO逆转了MCF-7细胞中关键的突变体相关转录程序。ENDO显著下调雌激素反应、凋亡、E2F靶标和Myc靶标通路,同时恢复氧化磷酸化、异生物质和脂肪酸代谢、p53信号以及DNA修复(FDR < 0.05)。转录因子富集显示对耐药相关的POU5F1和SOX11的抑制,以及FOXA1、ELF3和SPDEF的重新激活。ENDO还降低了六基因不良预后ESR1突变型特征中三个基因(MTMR7、IL20、CA12)的表达。在正在进行的EVANGELINE II期试验(NCT05607004)中,40 mg/天剂量下的平均(Z)-endoxifen血浆水平达到278.5 ng/mL(≈746 nM)。 结论:总之,(Z)-endoxifen和elacestrant在ESR1-WT和突变型模型中均抑制ER依赖性转录,且具有临床相关性的(Z)-endoxifen浓度足以抑制突变型ESR1活性。Endoxifen还重编程了与ESR1突变型耐药和转移相关的关键转录和代谢通路。这些结果支持进一步评估(Z)-endoxifen在ESR1突变型乳腺癌中的通路层面效应,正在进行的研究正在检测其在临床前模型中阻断突变型ESR1驱动的增殖的能力。
查看英文原文 English abstract
Background: ESR1 mutations (e.g.Y537S and D538G) drive ligand-independent ER activation and resistance in ER-positive breast cancer. (Z)-Endoxifen, the active tamoxifen metabolite, inhibits ER signaling, but its impact on ESR1-mutant signaling and therapy-resistant disease is not yet fully defined. Methods: HEK293T cells were transfected with ESR1-WT or mutant plasmids together with an ERE-luciferase reporter and Renilla control. After 24 h, cells were treated with endoxifen, elacestrant (10 µM-0.01 nM), or 0.1% DMSO for an additional 24 h. Firefly luciferase activity was normalized to Renilla, and mean ± SD values from three independent experiments were used to generate dose-response curves. Transcriptomic analyses of 166 ESR1 Y537S and 45 ESR1-WT MCF-7 samples from PandaOmics were performed, and differential expression after endoxifen treatment was assessed using 27 treated and 25 untreated samples processed with limma and gseapy. Plasma and tumor samples were extracted by methanol precipitation with deuterated endoxifen-d₅ and quantified by UPLC-MRM on a Poroshell 120 EC-C18 column using a six-point calibration curve. Results: (Z)-Endoxifen (ENDO) and elacestrant (ELAC) both produced dose-dependent inhibition of ER signaling in wild-type and mutant ESR1 constructs. At 100 nM, ENDO and ELAC showed comparable suppression of WT and three common ESR1 mutants, consistent with the ~80 nM steady-state ENDO plasma level in women taking 20 mg tamoxifen. At higher doses, ENDO more effectively inhibited Y537S and D538G than ELAC. Transcriptomic analyses revealed that ENDO reversed key mutant-associated transcriptional programs in MCF-7 cells. ENDO significantly downregulated estrogen response, apoptosis, E2F-target, and Myc-target pathways while restoring oxidative phosphorylation, xenobiotic and fatty acid metabolism, p53 signaling, and DNA repair (FDR < 0.05). Transcription factor enrichment showed suppression of resistance-associated POU5F1 and SOX11, and reactivation of FOXA1, ELF3, and SPDEF. ENDO also reduced expression of three genes (MTMR7, IL20, CA12) from a six-gene poor-prognosis ESR1-mutant signature. In the ongoing EVANGELINE phase 2 trial (NCT05607004), mean (Z)-endoxifen plasma levels at 40 mg/day reached 278.5 ng/mL (≈746 nM). Conclusion: In summary, (Z)-endoxifen and elacestrant both suppress ER-dependent transcription in ESR1-WT and mutant models, and clinically relevant (Z)-endoxifen concentrations are sufficient to inhibit mutant ESR1 activity. Endoxifen additionally reprograms key transcriptional and metabolic pathways associated with ESR1-mutant resistance and metastasis. These results support further evaluation of (Z)-endoxifen's pathway-level effects in ESR1-mutant breast cancer, and ongoing studies are testing its ability to block mutant ESR1-driven proliferation in preclinical models.
利益披露 Disclosure
S. S. Hammer, Atossa Therapeutics Inc Employment, Stock. A. Ustiugova, Atossa Therapeutics Inc. ). Insilico Medicine Employment. A. Shneyderman, Atossa Therapeutics Inc. ). Insilico Medicine Employment. A. Veviorskiy, Atossa Therapeutics Inc ). Insilico Medicine Employment. K. M. Alawi, Atossa Therapeutics Inc ). Insilico Medicine Employment. M. Korzinkin, Atossa Therapeutics Inc ). Insilico Medicine Employment. L. Beaulieu, Atossa Therapeutics Inc. Employment. H. Erickson, Atossa Therapeutics Employment. S. M. Blackburn, Atossa Therapeutics Inc. Employment. H. Remmel, Atossa Therapeutics Inc. g., Board of Directors, non-salaried role), Stock. S. Quay, Atossa Therapeutics Inc Employment, g., Board of Directors, non-salaried role), CEO, President.

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