Sensing of dietary amino acids and regulation of calcium dynamics in adipose tissues through Adipokinetic hormone in Drosophila
Ahmad, M.; Wu, S.; Guo, X.; Perrimon, N.; He, L.
Show abstract
Nutrient sensing and the subsequent metabolic responses are fundamental functions of animals, closely linked to diseases such as type 2 diabetes and various obesity-related diseases. Drosophila melanogaster has emerged as an excellent model for investigating metabolism and its associated disorders. In this study, we used live-cell imaging to demonstrate that the fly functional homolog of mammalian glucagon, Adipokinetic hormone (AKH), secreted from AKH hormone-producing cells (APCs) in the corpora cardiaca, stimulates intracellular Ca2+ waves in the larval fat body/adipose tissue to promote lipid metabolism. Further, we show that specific dietary amino acids activate the APCs, leading to increased intracellular Ca2+ and subsequent AKH secretion. Finally, a comparison of Ca2+ dynamics in larval and adult fat bodies revealed different mechanisms of regulation, highlighting the interplay of pulses of AKH secretion, extracellular diffusion of the hormone, and intercellular communication through gap junctions. Our study underscores the suitability of Drosophila as a powerful model for exploring real-time nutrient sensing and inter-organ communication dynamics.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Maintenance of cell type-specific connectivity and circuit function requires Tao kinase 97%
- Innate behavior sequence progression by peptide-mediated interorgan crosstalk 96%
- The ubiquitin ligase Hecw controls oogenesis and neuronal homeostasis by promoting the liquid state of ribonucleoprotein particles 96%
Similar papers in this journal
- Nutritional state-dependent modulation of Insulin-Producing Cells in Drosophila 97%
- An antagonism between Spinophilin and Syd-1 operates upstream of memory promoting presynaptic long-term plasticity 96%
- Molecular characterization of gustatory second-order neurons reveals integrative mechanisms of gustatory and metabolic information 96%
Similar papers in this journal
- Neuronal IL-17 controls C. elegans developmental diapause through CEP-1/p53 95%
- Resistance to host antimicrobial peptides mediates resilience of gut commensals during infection and aging in Drosophila 95%
- Assembly of a functional neuronal circuit in embryos of an ancestral metazoan is influenced by environmental signals including the microbiome 95%
Similar papers in this journal
- Hbs and Rst adhesion molecules provide a regional code that regulates cell elimination during epithelial remodelling 94%
- Dual roles of Drosophila reward-encoding dopamine neurons in regulating innate and learned behaviors 94%
- Metabolic cooperation among commensal bacteria supports Drosophila juvenile growth under nutritional stress 94%
Similar papers in this journal
"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.