Glucose Challenge Uncovers Temporal Fungibility of Metabolic Homeostasis over a day:night cycle
Glucose Challenge Uncovers Temporal Fungibility of Metabolic Homeostasis over a day:night cycle
Rhythmicity is a cornerstone of behavioral and biological processes, especially metabolism, yet the mechanisms behind metabolite cycling remain elusive. This study uncovers a robust oscillation in key metabolite pathways downstream of glucose in humans. A purpose-built 13C6-glucose isotope tracing platform was used to sample Drosophila every 4h and probe these pathways, revealing a striking peak in biosynthesis shortly after lights-on in wild-type flies. A hyperactive mutant (fumin) demonstrates increased Krebs cycle labelling and dawn-specific glycolysis labelling. Surprisingly, neither underlying feeding rhythms nor the presence of food availability explain the rhythmicity of glucose processing across genotypes, suggesting a robust internal mechanism for metabolic control of glucose processing. These results align with clinical data highlighting detrimental effects of mistimed energy intake. Our approach offers a unique insight into the dynamic range of daily metabolic processing and provides a mechanistic foundation for exploring circadian metabolic homeostasis in disease contexts.
Zhang Shirley L、Barber Annika、Arnadottir Erna Sif、Rhoades Seth D、Sengupta Arjun、Haynes Paula、Kibbey Richard G、Malik Dania M、Sehgal Amita、Weljie Aalim M、Kain Pinky、Pack Allan
生物化学生理学基础医学
Zhang Shirley L,Barber Annika,Arnadottir Erna Sif,Rhoades Seth D,Sengupta Arjun,Haynes Paula,Kibbey Richard G,Malik Dania M,Sehgal Amita,Weljie Aalim M,Kain Pinky,Pack Allan.Glucose Challenge Uncovers Temporal Fungibility of Metabolic Homeostasis over a day:night cycle[EB/OL].(2025-03-28)[2025-07-21].https://www.biorxiv.org/content/10.1101/2023.10.30.564837.点此复制
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