Mitochondrial supercomplex assembly regulates metabolic features and glutamine dependency in mammalian cells

谷氨酰胺 线粒体 柠檬酸循环 氧化磷酸化 细胞生物学 谷氨酰胺分解 生物化学 生物 线粒体内膜 呼吸链 焊剂(冶金) 化学 新陈代谢 氨基酸 有机化学
作者
Kun Zhang,Linjie Chen,Bo Wang,Deyu Chen,Xianglai Ye,Xinyu Han,Quan Fang,Can Yu,Jia Wu,Sihan Guo,Lifang Chen,Yu Shi,Lan Wang,Cheng Huang,Hao Li,Lu Shen,Qiongya Zhao,Liqin Jin,Jianxin Lyu,Hezhi Fang
出处
期刊:Theranostics [Ivyspring International Publisher]
卷期号:13 (10): 3165-3187 被引量:5
标识
DOI:10.7150/thno.78292
摘要

Rationale: Mitochondria generate ATP via the oxidative phosphorylation system, which mainly comprises five respiratory complexes found in the inner mitochondrial membrane.A high-order assembly of respiratory complexes is called a supercomplex.COX7A2L is a supercomplex assembly factor that has been well-investigated for studying supercomplex function and assembly.To date, the effects of mitochondrial supercomplexes on cell metabolism have not been elucidated.Methods: We depleted COX7A2L or Cox7a2l in human and mouse cells to generate cell models lacking mitochondrial supercomplexes as well as in DBA/2J mice as animal models.We tested the effect of impaired supercomplex assembly on cell proliferation with different nutrient supply.We profiled the metabolic features in COX7A2L -/-cells and Cox7a2l -/-mice via the combined use of targeted and untargeted metabolic profiling and metabolic flux analysis.We further tested the role of mitochondrial supercomplexes in pancreatic ductal adenocarcinoma (PDAC) through PDAC cell lines and a nude mouse model.Results: Impairing mitochondrial supercomplex assembly by depleting COX7A2L in human cells reprogrammed metabolic pathways toward anabolism and increased glutamine metabolism, cell proliferation and antioxidative defense.Similarly, knockout of Cox7a2l in DBA/2J mice promoted the use of proteins/amino acids as oxidative carbon sources.Mechanistically, impaired supercomplex assembly increased electron flux from CII to CIII/CIV and promoted CII-dependent respiration in COX7A2L -/-cells which further upregulated glutaminolysis and glutamine oxidation to accelerate the reactions of the tricarboxylic acid cycle.Moreover, the proliferation of PDAC cells lacking COX7A2L was inhibited by glutamine deprivation.Conclusion: Our results reveal the regulatory role of mitochondrial supercomplexes in glutaminolysis which may fine-tune the fate of cells with different nutrient availability.
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