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Publication : Lacteal junction zippering protects against diet-induced obesity.

First Author  Zhang F Year  2018
Journal  Science Volume  361
Issue  6402 Pages  599-603
PubMed ID  30093598 Mgi Jnum  J:264372
Mgi Id  MGI:6194795 Doi  10.1126/science.aap9331
Citation  Zhang F, et al. (2018) Lacteal junction zippering protects against diet-induced obesity. Science 361(6402):599-603
abstractText  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 Neuropilin1 (Nrp1) and Vascular endothelial growth factor receptor 1 (Vegfr1; also known as Flt1) 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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