bioRxiv · 10.1101/2024.05.06.592638
TRPg regulates lipid metabolism through Dh44 neuroendocrine cells
Abstract
Understanding how the brain controls nutrient storage is pivotal. Transient receptor potential (TRP) channels are conserved from insects to humans. They serve in detecting environmental shifts and in acting as internal sensors. Here, we found that a TRP{gamma} mutant exhibited in Drosophila melanogaster are required for maintaining normal lipid and protein levels. In animals, lipogenesis and lipolysis control lipid levels in response to food availability. Lipids are mostly stored as triacylglycerol in the fat bodies (FBs) of D. melanogaster. Interestingly, trp{gamma} deficient mutants exhibited elevated TAG levels and our genetic data indicated that Dh44 neurons are indispensable for normal lipid storage but not protein storage. The trp{gamma} mutants also exhibited reduced starvation resistance, which was attributed to insufficient lipolysis in the FBs. This could be mitigated by administering lipase or metformin orally, indicating a potential treatment pathway. Gene expression analysis indicated that trp{gamma} knockout downregulated brummer, a key lipolytic gene, resulting in chronic lipolytic deficits in the gut and other fat tissues. The study also highlighted the role of specific proteins, including neuropeptide DH44 and its receptor DH44R2 in lipid regulation. Our findings provide insight into the broader question of how the brain and gut regulates nutrient storage.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Nath, D. K., Dhakal, S., Lee, Y.. 2024-05-08. TRPg regulates lipid metabolism through Dh44 neuroendocrine cells. https://doi.org/10.1101/2024.05.06.592638
Cite the original work for its findings. Save a collection to share your selection of sources.