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Extra-virgin olive oil contains a metabolo-epigenetic inhibitor of cancer stem cells

机译:特级初榨橄榄油包含癌症干细胞的代谢型表观遗传抑制剂

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摘要

Targeting tumor-initiating, drug-resistant populations of cancer stem cells (CSC) with phytochemicals is a novel paradigm for cancer prevention and treatment. We herein employed a phenotypic drug discovery approach coupled to mechanism-of-action profiling and target deconvolution to identify phenolic components of extra virgin olive oil (EVOO) capable of suppressing the functional traits of CSC in breast cancer (BC). In vitro screening revealed that the secoiridoid decarboxymethyl oleuropein aglycone (DOA) could selectively target subpopulations of epithelial-like, aldehyde dehydrogenase (ALDH)-positive and mesenchymal-like, CD44+CD24−/low CSC. DOA could potently block the formation of multicellular tumorspheres generated from single-founder stem-like cells in a panel of genetically diverse BC models. Pretreatment of BC populations with noncytotoxic doses of DOA dramatically reduced subsequent tumor-forming capacity in vivo. Mice orthotopically injected with CSC-enriched BC-cell populations pretreated with DOA remained tumor-free for several months. Phenotype microarray-based screening pointed to a synergistic interaction of DOA with the mTOR inhibitor rapamycin and the DNA methyltransferase (DNMT) inhibitor 5-azacytidine. In silico computational studies indicated that DOA binds and inhibits the ATP-binding kinase domain site of mTOR and the S-adenosyl-l-methionine (SAM) cofactor-binding pocket of DNMTs. FRET-based Z-LYTE™ and AlphaScreen-based in vitro assays confirmed the ability of DOA to function as an ATP-competitive mTOR inhibitor and to block the SAM-dependent methylation activity of DNMTs. Our systematic in vitro, in vivo and in silico approaches establish the phenol-conjugated oleoside DOA as a dual mTOR/DNMT inhibitor naturally occurring in EVOO that functionally suppresses CSC-like states responsible for maintaining tumor-initiating cell properties within BC populations.
机译:用植物化学物质靶向肿瘤起始,耐药性的癌症干细胞(CSC)群体是预防和治疗癌症的新范式。我们在本文中采用了一种表型药物发现方法,并将其与作用机理分析和靶标去卷积相结合,以鉴定能够抑制乳腺癌(BC)中CSC功能性状的特级初榨橄榄油(EVOO)的酚类成分。体外筛选显示,类二十碳四烯脱羧甲基橄榄苦苷糖苷配基(DOA)可以选择性靶向上皮样,醛脱氢酶(ALDH)阳性和间质样的亚群,CD44 + CD24 -// low CSC。在一系列遗传多样的BC模型中,DOA可以有效地阻止由单创始人干细胞样细胞生成的多细胞肿瘤球的形成。用非细胞毒性剂量的DOA预处理BC群体会大大降低随后体内的肿瘤形成能力。原位注射经DOA预处理的富含CSC的BC细胞群体的小鼠保持无肿瘤状态已有几个月。基于表型基于微阵列的筛选表明DOA与mTOR抑制剂雷帕霉素和DNA甲基转移酶(DNMT)抑制剂5-氮杂胞苷具有协同作用。在计算机上进行的计算机研究表明,DOA结合并抑制mTOR的ATP结合激酶结构域位点和DNMT的S-腺苷-1-甲硫氨酸(SAM)辅因子结合口袋。基于FRET的Z-LYTE™和基于AlphaScreen的体外分析证实了DOA具有作为ATP竞争性mTOR抑制剂并阻断DNMT的SAM依赖性甲基化活性的能力。我们系统的体外,体内和计算机模拟方法将酚偶联的油苷DOA建立为天然存在于EVOO中的mTOR / DNMT双重抑制剂,可在功能上抑制CSC样状态,从而维持BC人群中的肿瘤起始细胞特性。

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