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Metabolic learning and memory formation by the brain influence systemic metabolic homeostasis

Author

Listed:
  • Yumin Zhang

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine
    the First Hospital of Jilin University)

  • Gang Liu

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine)

  • Jingqi Yan

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine)

  • Yalin Zhang

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine)

  • Bo Li

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine)

  • Dongsheng Cai

    (Diabetes Research Center, Institute of Aging, Albert Einstein College of Medicine)

Abstract

Metabolic homeostasis is regulated by the brain, but whether this regulation involves learning and memory of metabolic information remains unexplored. Here we use a calorie-based, taste-independent learning/memory paradigm to show that Drosophila form metabolic memories that help in balancing food choice with caloric intake; however, this metabolic learning or memory is lost under chronic high-calorie feeding. We show that loss of individual learning/memory-regulating genes causes a metabolic learning defect, leading to elevated trehalose and lipid levels. Importantly, this function of metabolic learning requires not only the mushroom body but also the hypothalamus-like pars intercerebralis, while NF-κB activation in the pars intercerebralis mimics chronic overnutrition in that it causes metabolic learning impairment and disorders. Finally, we evaluate this concept of metabolic learning/memory in mice, suggesting that the hypothalamus is involved in a form of nutritional learning and memory, which is critical for determining resistance or susceptibility to obesity. In conclusion, our data indicate that the brain, and potentially the hypothalamus, direct metabolic learning and the formation of memories, which contribute to the control of systemic metabolic homeostasis.

Suggested Citation

  • Yumin Zhang & Gang Liu & Jingqi Yan & Yalin Zhang & Bo Li & Dongsheng Cai, 2015. "Metabolic learning and memory formation by the brain influence systemic metabolic homeostasis," Nature Communications, Nature, vol. 6(1), pages 1-13, November.
  • Handle: RePEc:nat:natcom:v:6:y:2015:i:1:d:10.1038_ncomms7704
    DOI: 10.1038/ncomms7704
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    Cited by:

    1. Tin-Tin Win-Shwe & Rie Yanagisawa & Eiko Koike & Hirohisa Takano, 2019. "Memory Function, Neurological, and Immunological Biomarkers in Allergic Asthmatic Mice Intratracheally Exposed to Bisphenol A," IJERPH, MDPI, vol. 16(19), pages 1-16, October.

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