Adaptive mitochondrial regulation of the proteasome
Meul, T.; Berschneider, K.; Schmitt, S.; Mayr, C. H.; Mattner, L. F.; Schiller, H. B.; Yazgili, A.; Wang, X.; Lukas, C.; Prehn, C.; Adamski, J.; Graf, E.; Schwarzmayr, T.; Perocchi, F.; Kukat, A.; Trifunovic, A.; Kremer, L.; Prokisch, H.; Popper, B.; von Toerne, C.; Hauck, S. M.; Zischka, H.; Meiners, S.
Show abstract
The proteasome is the main proteolytic system for targeted protein degradation in the cell. Its function is fine-tuned according to cellular needs. Regulation of proteasome function by mitochondrial metabolism, however, is unknown. Here, we demonstrate that mitochondrial dysfunction reduces the assembly and activity of the 26S proteasome in the absence of oxidative stress. Impaired respiratory complex I function leads to metabolic reprogramming of the Krebs cycle and deficiency in aspartate. Aspartate supplementation activates assembly and activity of 26S proteasomes via transcriptional activation of the proteasome assembly factors p28 and Rpn6. This metabolic adaptation of 26S proteasome function involves sensing of aspartate via the mTORC1 pathway. Metformin treatment of primary human cells similarly reduced assembly and activity of 26S proteasome complexes, which was fully reversible and rescued by supplementation of aspartate or pyruvate. Of note, respiratory dysfunction conferred resistance towards the proteasome inhibitor Bortezomib. Our study uncovers a fundamental novel mechanism of how mitochondrial metabolism adaptively adjusts protein degradation by the proteasome. It thus unravels unexpected consequences of defective mitochondrial metabolism in disease or drug-targeted mitochondrial reprogramming for proteasomal protein degradation in the cell. As metabolic inhibition of proteasome function can be alleviated by treatment with aspartate or pyruvate, our results also have therapeutic implications.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A GID E3 ligase assembly ubiquitinates an Rsp5 E3 adaptor and regulates plasma membrane transporters 93%
- Mitochondrial respiration is required to provide amino acids during fermentative proliferation of fission yeast 93%
- The breast cancer oncogene IKKε coordinates mitochondrial function and serine metabolism 93%
Similar papers in this journal
- Activating the NFE2L1-ubiquitin-proteasome system by DDI2 protects from ferroptosis 94%
- TRAP1 and cyclophilin D compete at OSCP subunit to regulate enzymatic activity and permeability transition pore opening by F-ATP synthase 94%
- PERK orchestrates MERCS formation and mitochondrial remodelling promoting physiological adaptations during adaptive UPR signalling 92%
Similar papers in this journal
Similar papers in this journal
- CRY1-CBS binding regulates circadian clock function and metabolism 93%
- Temporal inhibition of electron transport chain attenuates stress-induced cellular senescence by prolonged disturbance of proteostasis in human fibroblasts 92%
- The malate aspartate shuttle supports thermogenic lipid mobilization in brown adipocytes 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.