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多药耐药转运蛋白P-糖蛋白赋予对铁死亡诱导剂的抗性。

The Multidrug Resistance Transporter P-glycoprotein Confers Resistance to Ferroptosis Inducers.

作者信息

Frye William J E, Huff Lyn M, Dalmasy José M González, Salazar Paula, Carter Rachel M, Gensler Ryan T, Esposito Dominic, Robey Robert W, Ambudkar Suresh V, Gottesman Michael M

机构信息

Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD.

Protein Expression Laboratory, Frederick National Laboratory for Cancer Research, Leidos Biomedical Research, Inc, Frederick, MD.

出版信息

bioRxiv. 2023 Feb 23:2023.02.23.529736. doi: 10.1101/2023.02.23.529736.

Abstract

Ferroptosis is a form of cell death caused by direct or indirect inhibition of glutathione peroxidase 4 that leads to lethal lipid peroxidation. Several small molecule ferroptosis inducers (FINs) have been reported, yet little information is available regarding resistance mechanisms, particularly their interaction with the ATP-binding cassette (ABC) transporters P-glycoprotein (P-gp, ABCB1) and ABCG2. Given the role that ABC transporters play in absorption, distribution, and excretion of many drugs, characterizing these interactions could provide information regarding oral bioavailability and brain penetration and may predict drug-drug interactions. Using ferroptosis-sensitive A673 cells transfected to express P-gp or ABCG2, we found that P-gp overexpression was able to confer resistance to FIN56 and the erastin derivatives imidazole ketone erastin and piperazine erastin. Results were confirmed with OVCAR8-derived NCI/ADR-RES cells that overexpress P-gp, where the P-gp inhibitor valspodar completely inhibited resistance to the FINs. P-gp-mediated resistance to imidazole ketone erastin and piperazine erastin was also reversed in UO-31 renal cancer cells by CRISPR-mediated knockout of . At a concentration of 10 μM, the FINs ML-162, GPX inhibitor 26a, and PACMA31 were able to increase intracellular rhodamine 123 fluorescence over 10-fold in P-gp-expressing MDR-19 cells and GPX inhibitor 26a was able to increase intracellular purpurin-18 fluorescence over 4-fold in ABCG2-expressing R-5 cells. Expression of P-gp may reduce the efficacy of these FINs in cancers that express the transporter and may prevent access to sanctuary sites such as the brain. The ability of some FINs to inhibit P-gp and ABCG2 suggests potential drug-drug interactions.

摘要

铁死亡是一种由直接或间接抑制谷胱甘肽过氧化物酶4导致致命性脂质过氧化而引起的细胞死亡形式。已经报道了几种小分子铁死亡诱导剂(FINs),但关于耐药机制的信息很少,特别是它们与ATP结合盒(ABC)转运蛋白P-糖蛋白(P-gp,ABCB1)和ABCG2的相互作用。鉴于ABC转运蛋白在许多药物的吸收、分布和排泄中所起的作用,表征这些相互作用可以提供有关口服生物利用度和脑渗透性的信息,并可能预测药物相互作用。使用转染以表达P-gp或ABCG2的铁死亡敏感A673细胞,我们发现P-gp过表达能够赋予对FIN56以及埃拉斯汀衍生物咪唑酮埃拉斯汀和哌嗪埃拉斯汀的抗性。用过表达P-gp的源自OVCAR8的NCI/ADR-RES细胞证实了结果,其中P-gp抑制剂valspodar完全抑制了对FINs的抗性。在UO-31肾癌细胞中,通过CRISPR介导的基因敲除也逆转了P-gp介导的对咪唑酮埃拉斯汀和哌嗪埃拉斯汀的抗性。在浓度为10μM时,FINs ML-162、GPX抑制剂26a和PACMA31能够使表达P-gp的MDR-19细胞中的细胞内罗丹明123荧光增加10倍以上,并且GPX抑制剂26a能够使表达ABCG2的R-5细胞中的细胞内紫红素-18荧光增加4倍以上。P-gp的表达可能会降低这些FINs在表达该转运蛋白的癌症中的疗效,并可能阻止其进入脑等庇护部位。一些FINs抑制P-gp和ABCG2的能力表明存在潜在的药物相互作用。

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