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Plasticity of ether lipids promotes ferroptosis susceptibility and evasion

机译:乙醚脂质的可塑性促进了裂解性易感性和逃避

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The cellular organelles peroxisomes contribute to the sensitivity of cells to ferroptosis by synthesizing polyunsaturated ether phospholipids, and changes in the abundances of these lipids are associated with altered sensitivity to ferroptosis during cell-state transitions.Ferroptosis-an iron-dependent, non-apoptotic cell death process-is involved in various degenerative diseases and represents a targetable susceptibility in certain cancers(1). The ferroptosis-susceptible cell state can either pre-exist in cells that arise from certain lineages or be acquired during cell-state transitions(2-5). However, precisely how susceptibility to ferroptosis is dynamically regulated remains poorly understood. Here we use genome-wide CRISPR-Cas9 suppressor screens to identify the oxidative organelles peroxisomes as critical contributors to ferroptosis sensitivity in human renal and ovarian carcinoma cells. Using lipidomic profiling we show that peroxisomes contribute to ferroptosis by synthesizing polyunsaturated ether phospholipids (PUFA-ePLs), which act as substrates for lipid peroxidation that, in turn, results in the induction of ferroptosis. Carcinoma cells that are initially sensitive to ferroptosis can switch to a ferroptosis-resistant state in vivo in mice, which is associated with extensive downregulation of PUFA-ePLs. We further find that the pro-ferroptotic role of PUFA-ePLs can be extended beyond neoplastic cells to other cell types, including neurons and cardiomyocytes. Together, our work reveals roles for the peroxisome-ether-phospholipid axis in driving susceptibility to and evasion from ferroptosis, highlights PUFA-ePL as a distinct functional lipid class that is dynamically regulated during cell-state transitions, and suggests multiple regulatory nodes for therapeutic interventions in diseases that involve ferroptosis.
机译:过氧缺体通过合成多不饱和醚磷脂有助于细胞对硬质裂解的敏感性,并且这些脂质的丰度的变化与细胞 - 状态过渡期间对脱叶氏菌的敏感性改变有关。转移 - 一种铁依赖性的非凋亡细胞死亡过程 - 参与各种退行性疾病,并且代表了某些癌症中的可有症敏感性(1)。粘性致病细胞状态可以预先存在于来自某些谱系的细胞中或在细胞状态转变期间获得(2-5)。然而,恰恰是如何动态调节对糖凋亡的易感性仍然很差。在这里,我们使用基因组-宽的CRISPR-CAS9抑制筛来鉴定氧化细胞器过氧化物过氧化物作为人类肾和卵巢癌细胞中枯萎病敏感性的关键贡献。使用脂质体分析我们表明过氧化物酶体通过合成多不饱和醚磷脂(PUFA-EPLS)有助于脱盐,其作为脂质过氧化的底物,反过来导致诱导脱裂化。最初对硬质裂化敏敏感的癌细胞可以切换到小鼠体内体内的抗性抗性状态,这与PUFA-EPLS的广泛下调相关。我们进一步发现,PUFA-EPLS的Pro-Ferropotic作用可以将肿瘤细胞扩展到其他细胞类型,包括神经元和心肌细胞。我们的工作揭示了过氧化物体 - 醚 - 磷脂轴的作用在促进易感性和厌氧中的易裂解中,突出pufa-epl作为在细胞 - 状态转变期间动态调节的不同功能脂肪类,并表明治疗的多个调节节点涉及恶性凋亡的疾病的干预措施。

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  • 来源
    《Nature》 |2020年第7826期|603-608|共6页
  • 作者单位

    Broad Inst Cambridge MA 02142 USA|Harvard Univ Dept Chem & Chem Biol Cambridge MA 02138 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA|Harvard Univ Dept Chem & Chem Biol Cambridge MA 02138 USA;

    Broad Inst Cambridge MA 02142 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    MIT Dept Biol Cambridge MA USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    MIT Koch Inst Integrat Canc Res 77 Massachusetts Ave Cambridge MA 02139 USA;

    Broad Inst Cambridge MA 02142 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA;

    MIT Koch Inst Integrat Canc Res 77 Massachusetts Ave Cambridge MA 02139 USA|MIT Dept Chem Engn Cambridge MA 02139 USA;

    MIT Dept Biol Cambridge MA USA|MIT Dept Biol Engn 77 Massachusetts Ave Cambridge MA 02139 USA;

    Whitehead Inst Biomed Res 9 Cambridge Ctr Cambridge MA 02142 USA;

    Broad Inst Cambridge MA 02142 USA|Harvard Univ Dept Chem & Chem Biol Cambridge MA 02138 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 22:15:29

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