| Title : A Drosophila tumor model identifies a conserved Upd-JAK\/STAT-Akh signaling axis associated with metabolic changes in cancer cachexia - Yu_2026_Dis.Model.Mech_19_ |
| Author(s) : Yu K , Moroak GS , Verheyen EM |
| Ref : Dis Model Mech , 19 : , 2026 |
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Abstract :
Cancer-associated cachexia is a systemic wasting syndrome with no effective therapies, and it results in millions of deaths annually. Here, we established a Drosophila model of cancer cachexia using overexpression of Hipk and constitutively active Sik3 in larval epithelial tissue. Tumor-bearing larvae had significant muscle and fat body wasting, together with elevated carbohydrates and lipolysis. Mechanistically, tumors secrete Unpaired (Upd) ligands that activate JAK/STAT signaling in corpora cardiaca cells, inducing the expression of glucagon-like hormone Adipokinetic hormone (Akh). Elevated Akh, together with the lipase Brummer (Bmm), drives this systemic metabolic reprogramming and tissue catabolism. In conclusion, this study identifies a conserved tumor-host Upd-JAK/STAT-Akh signaling axis that contributes to organ wasting. |
| PubMedSearch : Yu_2026_Dis.Model.Mech_19_ |
| PubMedID: 42299622 |
Yu K, Moroak GS, Verheyen EM (2026)
A Drosophila tumor model identifies a conserved Upd-JAK\/STAT-Akh signaling axis associated with metabolic changes in cancer cachexia
Dis Model Mech
19 :
Yu K, Moroak GS, Verheyen EM (2026)
Dis Model Mech
19 :