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Ferroptosis Surveillance Independent of GPX4 and Differentially Regulated by Sex Hormones.

CELL(2023)

Mem Sloan Kettering Canc Ctr | Columbia Univ

Cited 96|Views33
Abstract
Ferroptosis, a cell death process driven by iron-dependent phospholipid peroxidation, has been implicated in various diseases. There are two major surveillance mechanisms to suppress ferroptosis: one mediated by glutathione peroxidase 4 (GPX4) that catalyzes the reduction of phospholipid peroxides and the other mediated by enzymes, such as FSP1, that produce metabolites with free radical-trapping antioxidant activity. In this study, through a whole-genome CRISPR activation screen, followed by mechanistic investigation, we identified phospholipid-modifying enzymes MBOAT1 and MBOAT2 as ferroptosis suppressors. MBOAT1/2 inhibit ferroptosis by remodeling the cellular phospholipid profile, and strikingly, their ferroptosis surveillance function is independent of GPX4 or FSP1. MBOAT1 and MBOAT2 are transcriptionally upregulated by sex hormone receptors, i.e., estrogen receptor (ER) and androgen receptor (AR), respectively. A combination of ER or AR antagonist with ferroptosis induction significantly inhibited the growth of ER+ breast cancer and AR+ prostate cancer, even when tumors were resistant to single-agent hormonal therapies.
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Key words
MBOAT1,MBOAT2,phospholipid remodeling,sex hormone signaling,ferroptosis,androgen receptor,estrogen receptor
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要点】:本研究通过基因组CRISPR激活筛选发现MBOAT1和MBOAT2是铁死亡抑制因子,其抑制功能独立于GPX4或FSP1,并受性激素受体调控。

方法】:研究采用全基因组CRISPR激活筛选和机制探讨的方法。

实验】:实验结果显示,MBOAT1和MBOAT2通过重塑细胞磷脂谱抑制铁死亡,且在雌激素受体(ER)和雄激素受体(AR)的调控下表达上调。联合使用ER或AR拮抗剂与铁死亡诱导剂能显著抑制ER乳腺癌和AR前列腺癌的生长,即使肿瘤对单一激素治疗有抗性。