Key result
Disruption of hepatic heparan sulfate-mediated clearance of triglyceride-rich lipoproteins resulted in a 2.25-fold increase in aortic arch plaque formation in Apoe-/- mice.
Effect estimate: 2.25-fold increase
Absolute Event Rate: 2.81% vs 1.24%
p-value: p=0.010
Hepatic clearance of triglyceride-rich lipoproteins is atheroprotective and depends on multivalent binding to ApoE and ApoAV via heparan sulfate proteoglycans.
ApoE determines TRL binding to SDC1; hypothesis-generating for dyslipidemia therapies but requires clinical validation.
The heparan sulfate proteoglycan (HSPG) syndecan-1 (SDC1) acts as a major receptor for triglyceride-rich lipoprotein (TRL) clearance in the liver. We sought to identify the relevant apolipoproteins on TRLs that mediate binding to SDC1 and determine their clinical relevance. Evidence supporting ApoE as a major determinant arose from its enrichment in TRLs from mice defective in hepatic heparan sulfate (Ndst1f/fAlbCre⁺ mice), decreased binding of ApoE-deficient TRLs to HSPGs on human hepatoma cells, and decreased clearance of ApoE-deficient [³H]TRLs in vivo. Evidence for a second ligand was suggested by the faster clearance of ApoE-deficient TRLs after injection into WT Ndst1f/fAlbCre⁻ versus mutant Ndst1f/fAlbCre⁺ mice and elevated fasting and postprandial plasma triglycerides in compound Apoe⁻/⁻Ndst1f/fAlbCre⁺ mice compared with either single mutant. ApoAV emerged as a candidate based on 6-fold enrichment of ApoAV in TRLs accumulating in Ndst1f/fAlbCre⁺ mice, decreased binding of TRLs to proteoglycans after depletion of ApoAV or addition of anti-ApoAV mAb, and decreased heparan sulfate-dependent binding of ApoAV-deficient particles to hepatocytes. Importantly, disruption of hepatic heparan sulfate-mediated clearance increased atherosclerosis. We conclude that clearance of TRLs by hepatic HSPGs is atheroprotective and mediated by multivalent binding to ApoE and ApoAV.
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Gonzales et al. (2013) studied Hypertriglyceridemia and Atherosclerosis. Disruption of hepatic heparan sulfate-mediated clearance (Ndst1f/fAlbCre+ mutation) vs. Intact hepatic heparan sulfate-mediated clearance (Ndst1f/fAlbCre-) was evaluated on Plaque formation in the aortic arch (mm2) (2.25-fold increase, p=0.010). Disruption of hepatic heparan sulfate-mediated clearance of triglyceride-rich lipoproteins resulted in a 2.25-fold increase in aortic arch plaque formation in Apoe-/- mice.
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