bioRxiv · 10.1101/722686
Autophagy controls lipid droplet formation by fine-tuning NCoR1 levels
Abstract
Lipid droplets (LDs) are dynamic organelles that store neutral lipids during times of energy excess, such as following a meal. LDs serve as an energy reservoir during fasting and have a buffering capacity that prevents lipotoxicity. Autophagy and the autophagic machinery have been proposed to play a role in LD biogenesis but the underlying molecular mechanism remains unclear. Here, we show that when nuclear receptor co-repressor 1 (NCoR1), which inhibits the transactivation of nuclear receptors, accumulates due to autophagy suppression, LD biogenesis is blocked. Ablation of ATG7, a gene essential for autophagy, suppressed the expression of gene targets of liver X receptor (LXR), a nuclear receptor responsible for fatty acid and triglyceride synthesis in an NCoR1-dependent manner. LD biogenesis in response to fasting and after hepatectomy was hampered by the suppression of autophagy. These results indicate that autophagy controls physiological hepatosteatosis by fine-tuning NCoR1 protein levels.
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Komatsu, M., Sou, Y.-S., Koike, M., Mizushima, N., Waguri, S., Terai, S., Kuma, A., Saito, T., Takahashi, S.-s., Yabe, T.. 2019-08-01. Autophagy controls lipid droplet formation by fine-tuning NCoR1 levels. https://doi.org/10.1101/722686
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