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MUC1-C是沙林霉素诱导癌症干细胞铁死亡的靶点。

MUC1-C is a target of salinomycin in inducing ferroptosis of cancer stem cells.

作者信息

Daimon Tatsuaki, Bhattacharya Atrayee, Wang Keyi, Haratake Naoki, Nakashoji Ayako, Ozawa Hiroki, Morimoto Yoshihiro, Yamashita Nami, Kosaka Takeo, Oya Mototsugu, Kufe Donald W

机构信息

Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA, USA.

Department of Gastroenterological Surgery, Kinan Hospital, Wakayama, Japan.

出版信息

Cell Death Discov. 2024 Jan 5;10(1):9. doi: 10.1038/s41420-023-01772-9.

Abstract

The oncogenic MUC1-C transmembrane protein is a critical effector of the cancer stem cell (CSC) state. Addiction to MUC1-C for self-renewal in the progression of human cancers has emphasized the need for development of anti-MUC1-C agents. However, there are presently no approved small molecules for targeting MUC1-C-dependent CSCs. In screening for small molecules, we identified salinomycin (SAL), an inducer of ferroptosis, as a potent inhibitor of MUC1-C signaling. We demonstrate that SAL suppresses MUC1-C expression by disrupting a NF-κB/MUC1-C auto-inductive circuit that is necessary for ferroptosis resistance. Our results show that SAL-induced MUC1-C suppression downregulates a MUC1-C→MYC pathway that activates genes encoding (i) glutathione-disulfide reductase (GSR), and (ii) the LDL receptor related protein 8 (LRP8), which inhibit ferroptosis by generating GSH and regulating selenium levels, respectively. GSR and LRP8 contribute to the function of glutathione peroxidase 4 (GPX4), an essential negative regulator of ferroptotic cell death. We demonstrate that targeting MUC1-C genetically or with the GO-203 peptide inhibitor suppresses GPX4 expression and GPX activity in association with the induction of ferroptosis. Studies of CSCs enriched by serial passage as tumorspheres further demonstrate that the effects of SAL are mediated by downregulation of MUC1-C and thereby overcoming resistance to ferroptosis. As confirmation of these results, rescue of MUC1-C downregulation with the MUC1-C cytoplasmic domain (i) reversed the suppression of GSR, LRP8 and GPX4 expression, and (ii) attenuated the induction of ferroptosis. These findings identify SAL as a unique small molecule inhibitor of MUC1-C signaling and demonstrate that MUC1-C is an important effector of resistance to ferroptosis.

摘要

致癌性MUC1-C跨膜蛋白是癌症干细胞(CSC)状态的关键效应因子。在人类癌症进展过程中,对MUC1-C自我更新的依赖凸显了开发抗MUC1-C药物的必要性。然而,目前尚无批准用于靶向依赖MUC1-C的CSC的小分子药物。在筛选小分子时,我们发现铁死亡诱导剂沙林霉素(SAL)是MUC1-C信号的有效抑制剂。我们证明SAL通过破坏铁死亡抗性所必需的NF-κB/MUC1-C自诱导回路来抑制MUC1-C表达。我们的结果表明,SAL诱导的MUC1-C抑制下调了MUC1-C→MYC途径,该途径激活编码(i)谷胱甘肽二硫化物还原酶(GSR)和(ii)低密度脂蛋白受体相关蛋白8(LRP8)的基因,它们分别通过产生谷胱甘肽和调节硒水平来抑制铁死亡。GSR和LRP8有助于谷胱甘肽过氧化物酶4(GPX4)的功能,GPX4是铁死亡细胞死亡的重要负调节因子。我们证明,通过基因靶向MUC1-C或使用GO-203肽抑制剂抑制GPX4表达和GPX活性与铁死亡的诱导有关。对通过连续传代富集为肿瘤球的CSC的研究进一步证明,SAL的作用是通过下调MUC1-C介导的,从而克服对铁死亡的抗性。作为这些结果的证实,用MUC1-C细胞质结构域挽救MUC1-C下调(i)逆转了对GSR、LRP8和GPX4表达的抑制,(ii)减弱了铁死亡的诱导。这些发现确定SAL是MUC1-C信号的独特小分子抑制剂,并证明MUC1-C是铁死亡抗性的重要效应因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb1a/10770371/88cc4c2ef3a0/41420_2023_1772_Fig1_HTML.jpg

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