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April 18, 2026Journal of Lipid Research0 citationsOpen Access

DENND5B Disruption Results in Reduced Body Fat and Increased Intestinal Fatty Acid Oxidation by Activation of Autophagy

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KNKhaga R. NeupaneAKAlexander KarakashianMMMaura Mobilia

Key Points

  • The study aims to explore the role of DENND5B in body composition and lipid metabolism, particularly its effect on dietary triglyceride absorption.
  • Genetic deletion of Dennd5b in a mouse model.
  • Comparison of postprandial triglyceride levels between male and female mice.
  • Assessment of intestinal chylomicron secretion and fatty acid oxidation.
  • Analysis of autophagy and mitochondrial function in enterocytes.
  • Dennd5b deletion in mice prevents postprandial triglyceride elevations in both sexes.
  • The absence of DENND5B impacts body composition and dietary fatty acid uptake.
  • Activation of autophagy and increased mitochondrial beta oxidation were observed.
  • Findings indicate a sex-biased effect of DENND5B on lipid metabolism.

Abstract

Intestinal absorption of dietary lipid is essential for systemic lipid homeostasis; however, elevated postprandial plasma lipid levels are associated with obesity and increased risk for atherosclerotic cardiovascular disease. In humans and rodents, biological sex impacts dietary triglyceride absorption and males tend to have higher postprandial triglyceride levels compared to females, but the physiological basis for this is not well understood. Here, we show that the gene DENND5B is associated with body composition in humans and mice and that genetic deletion of Dennd5b in mice prevents postprandial plasma triglyceride elevations in both sexes. Our findings establish a role for this protein in intestinal chylomicron secretion and reveal a biological sex-biased differential impact of its deletion on body composition, dietary fatty acid uptake, and intestinal metabolism. Mechanistically, our findings implicate autophagy and mitochondrial beta oxidation in coping with enterocyte lipid accumulation due to impaired chylomicron secretion. This work extends the emerging concept that the intestinal epithelium may play a prominent role in oxidation of diet-derived fatty acids and suggests that this process may contribute to biological sex-based differences in postprandial lipemia and body composition.

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Cite This Study

Neupane et al. (2026) studied this question.

synapsesocial.com/papers/69e31ec840886becb653e72bhttps://doi.org/10.1016/j.jlr.2026.101037
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