4.8 Article

Adipocyte iron levels impinge on a fat-gut crosstalk to regulate intestinal lipid absorption and mediate protection from obesity

Journal

CELL METABOLISM
Volume 33, Issue 8, Pages 1624-+

Publisher

CELL PRESS
DOI: 10.1016/j.cmet.2021.06.001

Keywords

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Funding

  1. US National Institutes of Health (United States) [RC2DK118620, R01DK55758, R01DK099110, P01DK088761, P01-AG051459, AHA825982, K01-DK125447]
  2. Deutsche Forschungsgemeinschaft (German) [414232833, 444933586]
  3. Novo Nordisk Foundation (Denmark)

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The role of iron in adipocytes plays an important role in maintaining systemic metabolism by regulating caloric influx through the adipocyte-enterocyte axis. Iron levels in adipose tissue can impact lipid absorption from the intestine and provide a protective effect against metabolic disorders induced by high-fat diets.
Iron overload is positively associated with diabetes risk. However, the role of iron in adipose tissue remains incompletely understood. Here, we report that transferrin-receptor-1-mediated iron uptake is differentially required for distinct subtypes of adipocytes. Notably, adipocyte-specific transferrin receptor 1 deficiency substantially protects mice from high-fat-diet-induced metabolic disorders. Mechanistically, low cellular iron levels have a positive impact on the health of the white adipose tissue and can restrict lipid absorption from the intestine through modulation of vesicular transport in enterocytes following high-fat diet feeding. Specific reduction of adipocyte iron by AAV-mediated overexpression of the iron exporter Ferroportin1 in adult mice effectively mimics these protective effects. In summary, our studies highlight an important role of adipocyte iron in the maintenance of systemic metabolism through an adipocyte-enterocyte axis, offering an additional level of control over caloric influx into the system after feeding by regulating intestinal lipid absorption.

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