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

线粒体超复合物组装调节哺乳动物细胞的代谢特征和谷氨酰胺依赖性

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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, Huang Cheng, Hao Li, Lu Shen, Qiongya Zhao, Liqin Jin, Jianxin Lyu, Hezhi Fang

Conclusion

Our results reveal the regulatory role of mitochondrial supercomplexes in glutaminolysis which may fine-tune the fate of cells with different nutrient availability.

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.

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