Zeb1 mediates EMT/plasticity-associated ferroptosis sensitivity in cancer cells by regulating lipogenic enzyme expression and phospholipid composition

IF 17.3 1区 生物学 Q1 CELL BIOLOGY Nature Cell Biology Pub Date : 2024-07-15 DOI:10.1038/s41556-024-01464-1
Annemarie Schwab, Zhigang Rao, Jie Zhang, André Gollowitzer, Katharina Siebenkäs, Nino Bindel, Elisabetta D’Avanzo, Ruthger van Roey, Yussuf Hajjaj, Ece Özel, Isabell Armstark, Leonhard Bereuter, Fengting Su, Julia Grander, Ehsan Bonyadi Rad, Arwin Groenewoud, Felix B. Engel, George W. Bell, Whitney S. Henry, José Pedro Friedmann Angeli, Marc P. Stemmler, Simone Brabletz, Andreas Koeberle, Thomas Brabletz
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Abstract

Therapy resistance and metastasis, the most fatal steps in cancer, are often triggered by a (partial) activation of the epithelial–mesenchymal transition (EMT) programme. A mesenchymal phenotype predisposes to ferroptosis, a cell death pathway exerted by an iron and oxygen-radical-mediated peroxidation of phospholipids containing polyunsaturated fatty acids. We here show that various forms of EMT activation, including TGFβ stimulation and acquired therapy resistance, increase ferroptosis susceptibility in cancer cells, which depends on the EMT transcription factor Zeb1. We demonstrate that Zeb1 increases the ratio of phospholipids containing pro-ferroptotic polyunsaturated fatty acids over cyto-protective monounsaturated fatty acids by modulating the differential expression of the underlying crucial enzymes stearoyl-Co-A desaturase 1 (SCD), fatty acid synthase (FASN), fatty acid desaturase 2 (FADS2), elongation of very long-chain fatty acid 5 (ELOVL5) and long-chain acyl-CoA synthetase 4 (ACSL4). Pharmacological inhibition of selected lipogenic enzymes (SCD and FADS2) allows the manipulation of ferroptosis sensitivity preferentially in high-Zeb1-expressing cancer cells. Our data are of potential translational relevance and suggest a combination of ferroptosis activators and SCD inhibitors for the treatment of aggressive cancers expressing high Zeb1. Schwab, Rao et al. report that Zeb1 mediates enhanced ferroptosis sensitivity in cancer cells after EMT activation, associated with altered expression of selected lipogenic enzymes and an subsequent increase in the PUFA:MUFA ratio.

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Zeb1 通过调控生脂酶的表达和磷脂组成,介导癌细胞对 EMT/可塑性相关铁中毒的敏感性
抗药性和转移是癌症中最致命的步骤,通常由(部分)激活上皮-间质转化(EMT)程序引发。间充质表型容易发生铁变态反应,铁变态反应是由铁和氧自由基介导的含有多不饱和脂肪酸的磷脂过氧化作用所产生的细胞死亡途径。我们在此表明,各种形式的 EMT 激活(包括 TGFβ 刺激和获得性耐药性)会增加癌细胞对铁中毒的易感性,而这种易感性取决于 EMT 转录因子 Zeb1。我们证明,Zeb1 通过调节基本关键酶硬脂酰-Co-A 去饱和酶 1(SCD)、脂肪酸合成酶(FASN)、脂肪酸去饱和酶 2(FADS2)、超长链脂肪酸伸长 5(ELOVL5)和长链酰基-CoA 合成酶 4(ACSL4)的差异表达,增加了含有促铁蛋白生成的多不饱和脂肪酸的磷脂比例,而非具有细胞保护作用的单不饱和脂肪酸。通过药理抑制选定的生脂酶(SCD 和 FADS2),可优先操纵高 Zeb1 表达癌细胞的铁突变敏感性。我们的数据具有潜在的转化意义,并建议结合使用铁蛋白沉积激活剂和 SCD 抑制剂来治疗高 Zeb1 表达的侵袭性癌症。
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来源期刊
Nature Cell Biology
Nature Cell Biology 生物-细胞生物学
CiteScore
28.40
自引率
0.90%
发文量
219
审稿时长
3 months
期刊介绍: Nature Cell Biology, a prestigious journal, upholds a commitment to publishing papers of the highest quality across all areas of cell biology, with a particular focus on elucidating mechanisms underlying fundamental cell biological processes. The journal's broad scope encompasses various areas of interest, including but not limited to: -Autophagy -Cancer biology -Cell adhesion and migration -Cell cycle and growth -Cell death -Chromatin and epigenetics -Cytoskeletal dynamics -Developmental biology -DNA replication and repair -Mechanisms of human disease -Mechanobiology -Membrane traffic and dynamics -Metabolism -Nuclear organization and dynamics -Organelle biology -Proteolysis and quality control -RNA biology -Signal transduction -Stem cell biology
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