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cisd-1突变体中的线粒体生物能量学缺陷与AMPK介导的脂质代谢有关。

Mitochondrial Bioenergetics Deficiency in cisd-1 Mutants is Linked to AMPK-Mediated Lipid Metabolism.

作者信息

Hsiung Kuei-Ching, Tang Hsiang-Yu, Cheng Mei-Ling, Hung Li-Man, Chin-Ming Tan Bertrand, Lo Szecheng J

机构信息

Department and Institute of Biomedical Sciences, College of Medicine, Chang Gung University, TaoYuan, Taiwan, 333.

Metabolomics Core Laboratory, Healthy Aging Research Center, Chang Gung University, TaoYuan, Taiwan.

出版信息

Biomed J. 2024 Nov 7:100806. doi: 10.1016/j.bj.2024.100806.

Abstract

BACKGROUND

CISD-1 is a mitochondrial iron-sulfate [2Fe-2S] protein known to be associated with various human diseases, including cancer and diabetes. Previously, we demonstrated that CISD-1 deficiency in worms lowers glucose and ATP levels. In this study, we further explored how worms compensate for lower ATP levels by analyzing changes in cytoplasmic and mitochondrial iron content, AMPK activities, and total lipid profiles.

MATERIALS AND METHODS

Expression levels of CISD-1 and CISD-1::GFP fusion proteins in wild-type worms (N2), cisd-1-deletion mutants (tm4993 and syb923) and GFP insertion transgenic worms (PHX953 and SJL40) were examined by western blot. Fluorescence microscopy analyzed CISD-1::GFP pattern in PHX953 embryos and adults, and lipid droplet sizes in N2, cisd-1, aak-2 and aak-2;cisd-1 worms. Total and mitochondrial iron content, electron transport complex profiles, and AMPK activity were investigated in tm4993 and syb923 mutants. mRNA levels of mitochondrial β-oxidation genes, acs-2, cpt-5, and ech-1, were quantified by RT-qPCR in various genetic worm strains. Lipidomic analyses were performed in N2 and cisd-1(tm4993) worms.

RESULTS

Defects in cisd-1 lead to an imbalance in iron transport and cause proton leak, resulting in lower ATP production by interrupting the mitochondrial electron transport chain. We identified a signaling pathway that links ATP deficiency-induced AMPK (AMP activated protein kinase) activation to the expression of genes that facilitate lipolysis via β-oxidation.

CONCLUSION

Our data provide a functional coordination between CISD-1 and AMPK constitutes a mitochondrial bioenergetics quality control mechanism that provides compensatory energy resources.

摘要

背景

CISD-1是一种线粒体铁硫[2Fe-2S]蛋白,已知与多种人类疾病相关,包括癌症和糖尿病。此前,我们证明了线虫中CISD-1的缺失会降低葡萄糖和ATP水平。在本研究中,我们通过分析细胞质和线粒体铁含量、AMPK活性以及总脂质谱的变化,进一步探究线虫如何补偿较低的ATP水平。

材料与方法

通过蛋白质免疫印迹法检测野生型线虫(N2)、cisd-1缺失突变体(tm4993和syb923)以及GFP插入转基因线虫(PHX953和SJL40)中CISD-1和CISD-1::GFP融合蛋白的表达水平。荧光显微镜分析了PHX953胚胎和成虫中CISD-1::GFP的模式,以及N2、cisd-1、aak-2和aak-2;cisd-1线虫中的脂滴大小。研究了tm4993和syb923突变体中的总铁和线粒体铁含量、电子传递复合体谱以及AMPK活性。通过逆转录定量PCR(RT-qPCR)对各种遗传线虫品系中线粒体β-氧化基因acs-2、cpt-5和ech-1的mRNA水平进行了定量分析。对N2和cisd-1(tm4993)线虫进行了脂质组学分析。

结果

cisd-1缺陷导致铁运输失衡并引起质子泄漏,通过中断线粒体电子传递链导致ATP生成减少。我们确定了一条信号通路,该通路将ATP缺乏诱导的AMPK(AMP激活的蛋白激酶)激活与通过β-氧化促进脂肪分解的基因表达联系起来。

结论

我们的数据表明,CISD-1与AMPK之间的功能协调构成了一种线粒体生物能量质量控制机制,可提供补偿性能量资源。

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