| Literature DB >> 20830789 |
Aurélie C Fabre1, Camille Malaval, Abduelhakem Ben Addi, Céline Verdier, Véronique Pons, Nizar Serhan, Laeticia Lichtenstein, Guillaume Combes, Thierry Huby, François Briand, Xavier Collet, Niels Nijstad, Uwe J F Tietge, Bernard Robaye, Bertrand Perret, Jean-Marie Boeynaems, Laurent O Martinez.
Abstract
UNLABELLED: A major atheroprotective functionality of high-density lipoproteins (HDLs) is to promote "reverse cholesterol transport" (RCT). In this process, HDLs mediate the efflux and transport of cholesterol from peripheral cells and its subsequent transport to the liver for further metabolism and biliary excretion. We have previously demonstrated in cultured hepatocytes that P2Y(13) (purinergic receptor P2Y, G protein-coupled, 13) activation is essential for HDL uptake but the potential of P2Y(13) as a target to promote RCT has not been documented. Here, we show that P2Y(13)-deficient mice exhibited a decrease in hepatic HDL cholesterol uptake, hepatic cholesterol content, and biliary cholesterol output, although their plasma HDL and other lipid levels were normal. These changes translated into a substantial decrease in the rate of macrophage-to-feces RCT. Therefore, hallmark features of RCT are impaired in P2Y(13)-deficient mice. Furthermore, cangrelor, a partial agonist of P2Y(13), stimulated hepatic HDL uptake and biliary lipid secretions in normal mice and in mice with a targeted deletion of scavenger receptor class B type I (SR-BI) in liver (hypomSR-BI-knockout(liver)) but had no effect in P2Y(13) knockout mice, which indicate that P2Y(13)-mediated HDL uptake pathway is independent of SR-BI-mediated HDL selective cholesteryl ester uptake.Entities:
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Year: 2010 PMID: 20830789 DOI: 10.1002/hep.23897
Source DB: PubMed Journal: Hepatology ISSN: 0270-9139 Impact factor: 17.425