Dietary Amino Acids Promote Glucagon-like Hormone Release to Generate Novel Calcium Waves in Adipose Tissues
Li He, Muhammad Ahmad, Shang Wu, Shengyao Luo, Wenjia Shi, Xuan Guo, Yuansheng Cao, Norbert Perrimon

TL;DR
This study shows how dietary amino acids trigger hormone release in fruit flies, leading to new calcium waves in fat tissues that help break down lipids.
Contribution
The discovery of a gap-junction-independent mechanism for calcium wave propagation in adipose tissues triggered by amino acids and AKH.
Findings
Dietary amino acids activate APCs, increasing intracellular Ca2+ and AKH secretion.
AKH stimulates gap-junction-independent calcium waves in larval fat to promote lipolysis.
Adult fat body shows gap-junction-dependent calcium waves triggered by diffused AKH.
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 morbidities. Among different metabolic regulatory signals, cytosolic Ca2+ plays pivotal roles in metabolic regulation, including glycolysis, gluconeogenesis, and lipolysis. Recently, intercellular calcium waves (ICWs), the propagation of Ca2+ signaling through tissues, have been found in different systems to coordinate multicellular responses. Nevertheless, our understanding of how ICWs are modulated and operate within living organisms remains limited. In this study, we explore the real-time dynamics, both in organ culture and free-behaving animals, of ICWs in Drosophila larval and adult adipose tissues. We identified Adipokinetic hormone (AKH), the fly functional homolog of mammalian glucagon, as the key factor…
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Taxonomy
TopicsNeurobiology and Insect Physiology Research · Adipose Tissue and Metabolism · Biochemical Analysis and Sensing Techniques
