Lacteal junction zippering protects against diet-induced obesity.

Zhang, Feng; Zarkada, Georgia; Han, Jinah; Li, Jinyu; Dubrac, Alexandre; Ola, Roxana; Genet, Gael; Boyé, Kevin et al. · Science · 2018

basic_science · Level V

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Abstract

Excess dietary lipid uptake causes obesity, a major global health problem. Enterocyte-absorbed lipids are packaged into chylomicrons, which enter the bloodstream through intestinal lymphatic vessels called lacteals. Here, we show that preventing lacteal chylomicron uptake by inducible endothelial genetic deletion of <i>Neuropilin1</i> (<i>Nrp1</i>) and <i>Vascular endothelial growth factor receptor 1</i> (<i>Vegfr1</i>; also known as <i>Flt1</i>) renders mice resistant to diet-induced obesity. Absence of NRP1 and FLT1 receptors increased VEGF-A bioavailability and signaling through VEGFR2, inducing lacteal junction zippering and chylomicron malabsorption. Restoring permeable lacteal junctions by VEGFR2 and vascular endothelial (VE)-cadherin signaling inhibition rescued chylomicron transport in the mutant mice. Zippering of lacteal junctions by disassembly of cytoskeletal VE-cadherin anchors prevented chylomicron uptake in wild-type mice. These data suggest that lacteal junctions may be targets for preventing dietary fat uptake.

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