Bcl-xL regulates radiation-induced ferroptosis through chaperone-mediated autophagy of GPX4 in tumor cells

Q1 Health Professions
Jing Han , Ruru Wang , Bin Chen , Feng Xu , Liangchen Wei , An Xu , Lijun Wu , Guoping Zhao
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引用次数: 0

Abstract

Objective

To investigate the role and the molecular mechanisms of apoptotic signaling in ferroptosis to regulate tumor radiosensitivity.

Methods

Reactive oxygen species (ROS) and lipid peroxide levels were detected in Mouse embryonic fibroblasts(MEFs) with Bcl-xL or Mcl-1 deficiency induced by erastin. Colony formation, ROS, lipid peroxidation and the transcription/translation levels of PTGS2 were measured in Bcl-xL knockdown tumor cells induced by 5 ​Gy γ-rays or co-treated with ferrostatin-1 (Ferr-1). The protein levels of LPCAT3, ACSL4 and PEBP1 in Bcl-xL knockout MEF cells were evaluated in Bcl-xL knockout MEF cells post-radiation. Moreover, the interaction of heat shock protein 90 (HSP90) with Bcl-xL, GPX4, or LAMP2A was detected by protein mass spectrometry and immunoprecipitation assays.

Results

Manipulating Bcl-xL levels facilitated radiation-induced ferroptosis by augmenting the enzymatic oxidation of polyunsaturated fatty acids (PUFAs) and enhancing chaperone-mediated autophagy (CMA) of glutathione peroxidase 4 (GPX4) (MEF cell line: t=4.540, P<0.01; A549 ​cell line: t=56.16, P<0.0001; t=4.885, P<0.01; HCT116 ​cell line: t=14.75, P<0.01; t=7.363, P<0.05). Downregulating Bcl-xL expression promoted the activity of acyl-CoA synthetase long-chain family member 4 (ACSL4), thus increasing the enzymatic oxidation of PUFAs (t=4.258, P<0.01). Moreover, depletion of Bcl-xL expedited the CMA process targeting GPX4 by facilitating the association of GPX4 with heat shock protein 90 (HSP90) and LAMP2A following radiation exposure. Subsequent degradation of GPX4 led to the accumulation of lipid peroxides, ultimately triggering ferroptosis.

Conclusions

Our study provides initial insights into the regulatory role of Bcl-xL in ferroptosis and underscores the potential of targeting Bcl-xL as a promising therapeutic strategy for cancer by modulating both apoptotic and ferroptotic pathways.

Bcl-xL 通过伴侣介导的肿瘤细胞 GPX4 自噬调节辐射诱导的铁蜕变
方法在厄拉斯汀诱导的 Bcl-xL 或 Mcl-1 缺乏的小鼠胚胎成纤维细胞(MEFs)中检测活性氧(ROS)和过氧化脂质水平。在 5 Gy γ 射线诱导或与铁前列素-1(Ferr-1)联合处理的 Bcl-xL 基因敲除肿瘤细胞中,检测了菌落形成、ROS、脂质过氧化和 PTGS2 的转录/翻译水平。在辐射后的 Bcl-xL 基因敲除 MEF 细胞中,评估了 LPCAT3、ACSL4 和 PEBP1 的蛋白水平。此外,还通过蛋白质质谱法和免疫沉淀法检测了热休克蛋白 90(HSP90)与 Bcl-xL、GPX4 或 LAMP2A 的相互作用。结果通过增强多不饱和脂肪酸(PUFAs)的酶促氧化作用和增强谷胱甘肽过氧化物酶 4(GPX4)的伴侣介导的自噬(CMA),调节 Bcl-xL 水平可促进辐射诱导的铁变态反应(MEF 细胞系:t=4.540,P<0.01;A549 细胞系:t=56.16,P<0.0001;t=4.885,P<0.01;HCT116 细胞系:t=14.75,P<0.01;t=7.363,P<0.05)。下调 Bcl-xL 的表达可促进酰基-CoA 合成酶长链家族成员 4(ACSL4)的活性,从而增加 PUFAs 的酶氧化作用(t=4.258,P<0.01)。此外,在辐射暴露后,Bcl-xL的耗竭通过促进GPX4与热休克蛋白90(HSP90)和LAMP2A的结合,加快了以GPX4为目标的CMA过程。结论:我们的研究初步揭示了 Bcl-xL 在铁凋亡中的调控作用,并强调了以 Bcl-xL 为靶点,通过调节凋亡和铁凋亡途径,作为一种有前途的癌症治疗策略的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radiation Medicine and Protection
Radiation Medicine and Protection Health Professions-Emergency Medical Services
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
103 days
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