Glycogen shortage during fasting triggers liver-brain-adipose neurocircuitry to facilitate fat utilization.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23939267.
- Also identified by DOI 10.1038/ncomms3316 and PMC identifier 3753545.
- Licence recorded as CC BY-NC-SA.
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Abstract
During fasting, animals maintain their energy balance by shifting their energy source from carbohydrates to triglycerides. However, the trigger for this switch has not yet been entirely elucidated. Here we show that a selective hepatic vagotomy slows the speed of fat consumption by attenuating sympathetic nerve-mediated lipolysis in adipose tissue. Hepatic glycogen pre-loading by the adenoviral overexpression of glycogen synthase or the transcription factor TFE3 abolished this liver-brain-adipose axis activation. Moreover, the blockade of glycogenolysis [corrected] through the knockdown of the glycogen phosphorylase gene and the resulting elevation in the glycogen content abolished the lipolytic signal from the liver, indicating that glycogen is the key to triggering this neurocircuitry. These results demonstrate that liver glycogen shortage activates a liver-brain-adipose neural axis that has an important role in switching the fuel source from glycogen to triglycerides under prolonged fasting conditions.
Medical subject headings
- Adipose Tissue
- Fasting
- Liver Glycogen
- Sympathetic Nervous System
- Triglycerides