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Astrocytic Insulin Signaling Couples Brain Glucose Uptake with Nutrient Availability

  • Cristina García-Cáceres
  • , Carmelo Quarta
  • , Luis Varela
  • , Yuanqing Gao
  • , Tim Gruber
  • , Beata Legutko
  • , Martin Jastroch
  • , Pia Johansson
  • , Jovica Ninkovic
  • , Chun Xia Yi
  • , Ophelia Le Thuc
  • , Klara Szigeti-Buck
  • , Weikang Cai
  • , Carola W. Meyer
  • , Paul T. Pfluger
  • , Ana M. Fernandez
  • , Serge Luquet
  • , Stephen C. Woods
  • , Ignacio Torres-Alemán
  • , C. Ronald Kahn
  • Magdalena Götz, Tamas L. Horvath, Matthias H. Tschöp

Producción científica: Articlerevisión exhaustiva

456 Citas (SciVal)

Resumen

We report that astrocytic insulin signaling co-regulates hypothalamic glucose sensing and systemic glucose metabolism. Postnatal ablation of insulin receptors (IRs) in glial fibrillary acidic protein (GFAP)-expressing cells affects hypothalamic astrocyte morphology, mitochondrial function, and circuit connectivity. Accordingly, astrocytic IR ablation reduces glucose-induced activation of hypothalamic pro-opio-melanocortin (POMC) neurons and impairs physiological responses to changes in glucose availability. Hypothalamus-specific knockout of astrocytic IRs, as well as postnatal ablation by targeting glutamate aspartate transporter (GLAST)-expressing cells, replicates such alterations. A normal response to altering directly CNS glucose levels in mice lacking astrocytic IRs indicates a role in glucose transport across the blood-brain barrier (BBB). This was confirmed in vivo in GFAP-IR KO mice by using positron emission tomography and glucose monitoring in cerebral spinal fluid. We conclude that insulin signaling in hypothalamic astrocytes co-controls CNS glucose sensing and systemic glucose metabolism via regulation of glucose uptake across the BBB.

Idioma originalEnglish
Páginas (desde-hasta)867-880
Número de páginas14
PublicaciónCell
Volumen166
N.º4
DOI
EstadoPublished - ago 11 2016

Nota bibliográfica

Publisher Copyright:
© 2016 Elsevier Inc.

Financiación

The authors thank Heicko Lickert and Silke Morin for helpful discussion and support and Lewis Norris, Clarita Mergen, Veronica Casquero García, Olavi Järvinen, and Nicole Wiegert for excellent technical assistance. This work was funded, in part, by the Helmholtz Alliance ICEMED – Imaging and Curing Environmental Metabolic Diseases, the Humboldt Foundation (to M.H.T.), through the Initiative and Networking Fund of the Helmholtz Association and Deutsches Zentrum für DiabetesForschung (DZD). This work also received funding from the Institute of Advanced Studies of Technische Universität München (IAS-TUM Hans-Fischer Senior Fellowship to T.L.H.) and from DFG funding (SFB 1123 to M.H.T; SFB 870 and SPP 1757 to M.G.).

FinanciadoresNúmero del financiador
Deutsches Zentrum für DiabetesForschung
Helmholtz Alliance ICEMED
IAS-TUM
Imaging and Curing Environmental Metabolic Diseases
Institute of Advanced Studies of Technische Universität München
National Institute of Diabetes and Digestive and Kidney DiseasesR01DK031036
National Institute of Diabetes and Digestive and Kidney Diseases
Alexander von Humboldt-Stiftung
Deutsche ForschungsgemeinschaftSPP 1757, SFB 870, SFB 1123
Deutsche Forschungsgemeinschaft
Max Delbrück Center for Molecular Medicine in the Helmholtz Association

    ASJC Scopus subject areas

    • General Biochemistry, Genetics and Molecular Biology

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