Conserved mechanisms of glucose sensing and regulation by Drosophila corpora cardiaca cells
Top Cited Papers
- 1 September 2004
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 431 (7006) , 316-320
- https://doi.org/10.1038/nature02897
Abstract
Antagonistic activities of glucagon and insulin control metabolism in mammals, and disruption of this balance underlies diabetes pathogenesis. Insulin-producing cells (IPCs) in the brain of insects such as Drosophila also regulate serum glucose1,2, but it remains unclear whether insulin is the sole hormonal regulator of glucose homeostasis and whether mechanisms of glucose-sensing and response in IPCs resemble those in pancreatic islets. Here we show, by targeted cell ablation, that Drosophila corpora cardiaca (CC) cells3,4,5 of the ring gland are also essential for larval glucose homeostasis. Unlike IPCs, CC cells express Drosophila cognates of sulphonylurea receptor (Sur) and potassium channel (Ir), proteins that comprise ATP-sensitive potassium channels regulating hormone secretion by islets and other mammalian glucose-sensing cells6,7,8. They also produce adipokinetic hormone, a polypeptide with glucagon-like functions. Glucose regulation by CC cells is impaired by exposure to sulphonylureas, drugs that target the Sur subunit. Furthermore, ubiquitous expression of an akh transgene reverses the effect of CC ablation on serum glucose. Thus, Drosophila CC cells are crucial regulators of glucose homeostasis and they use glucose-sensing and response mechanisms similar to islet cells.Keywords
This publication has 28 references indexed in Scilit:
- Hemolymph Sugar Homeostasis and Starvation-Induced Hyperactivity Affected by Genetic Manipulations of the Adipokinetic Hormone-Encoding Gene in Drosophila melanogasterGenetics, 2004
- Nutrient-Dependent Expression of Insulin-like Peptides from Neuroendocrine Cells in the CNS Contributes to Growth Regulation in DrosophilaCurrent Biology, 2002
- Inwardly Rectifying K+ (Kir) Channels inDrosophilaJournal of Biological Chemistry, 2002
- Ablation of Insulin-Producing Neurons in Flies: Growth and Diabetic PhenotypesScience, 2002
- Regulation of glucagon release in mouse α‐cells by KATP channels and inactivation of TTX‐sensitive Na+ channelsThe Journal of Physiology, 2000
- Tolbutamide stimulates exocytosis of glucagon by inhibition of a mitochondrial‐like ATP‐sensitive K+ (KATP) conductance in rat pancreatic A‐cellsThe Journal of Physiology, 2000
- Cloning of the β Cell High-Affinity Sulfonylurea Receptor: a Regulator of Insulin SecretionScience, 1995
- Identification and expression of the Drosophila adipokinetic hormone geneMolecular and Cellular Endocrinology, 1995
- THE SULPHONYLUREA RECEPTOR MAY BE AN ATP-SENSITIVE POTASSIUM CHANNELThe Lancet, 1985
- Is octopamine a transmitter mediating hormone release in insects?Journal of Neurobiology, 1981