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ApoC-III inhibits clearance of triglyceride-rich lipoproteins through LDL family receptors
by
Lew, Irene
, Graham, Mark J.
, Crooke, Rosanne M.
, Esko, Jeffrey D.
, Son, Ni-Huiping
, Goldberg, Ira J.
, Basu, Debapriya
, Gordts, Philip L.S.M.
, Nock, Ryan
, Gonzales, Jon C.
, Lee, Richard G.
, Thacker, Bryan E.
, Mullick, Adam E.
, Ramms, Bastian
, Witztum, Joseph L.
in
Animals
/ Apolipoprotein C-III - blood
/ Apolipoproteins
/ Biomedical research
/ Cardiovascular disease
/ Cholesterol
/ Experiments
/ Female
/ Genotype
/ Heparan sulfate
/ Heparin - pharmacology
/ Hepatocytes - metabolism
/ Ketones - metabolism
/ Laboratory animals
/ Lipid metabolism
/ Lipoproteins
/ Lipoproteins - blood
/ Liver
/ Liver - metabolism
/ Low Density Lipoprotein Receptor-Related Protein-1 - metabolism
/ Low density lipoproteins
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Mutation
/ Myocardium - metabolism
/ Observations
/ Properties
/ Proteins
/ Receptors, LDL - metabolism
/ Risk Factors
/ Rodents
/ Software
/ Studies
/ Triglycerides - blood
/ Tumor Suppressor Proteins - metabolism
2016
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ApoC-III inhibits clearance of triglyceride-rich lipoproteins through LDL family receptors
by
Lew, Irene
, Graham, Mark J.
, Crooke, Rosanne M.
, Esko, Jeffrey D.
, Son, Ni-Huiping
, Goldberg, Ira J.
, Basu, Debapriya
, Gordts, Philip L.S.M.
, Nock, Ryan
, Gonzales, Jon C.
, Lee, Richard G.
, Thacker, Bryan E.
, Mullick, Adam E.
, Ramms, Bastian
, Witztum, Joseph L.
in
Animals
/ Apolipoprotein C-III - blood
/ Apolipoproteins
/ Biomedical research
/ Cardiovascular disease
/ Cholesterol
/ Experiments
/ Female
/ Genotype
/ Heparan sulfate
/ Heparin - pharmacology
/ Hepatocytes - metabolism
/ Ketones - metabolism
/ Laboratory animals
/ Lipid metabolism
/ Lipoproteins
/ Lipoproteins - blood
/ Liver
/ Liver - metabolism
/ Low Density Lipoprotein Receptor-Related Protein-1 - metabolism
/ Low density lipoproteins
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Mutation
/ Myocardium - metabolism
/ Observations
/ Properties
/ Proteins
/ Receptors, LDL - metabolism
/ Risk Factors
/ Rodents
/ Software
/ Studies
/ Triglycerides - blood
/ Tumor Suppressor Proteins - metabolism
2016
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ApoC-III inhibits clearance of triglyceride-rich lipoproteins through LDL family receptors
by
Lew, Irene
, Graham, Mark J.
, Crooke, Rosanne M.
, Esko, Jeffrey D.
, Son, Ni-Huiping
, Goldberg, Ira J.
, Basu, Debapriya
, Gordts, Philip L.S.M.
, Nock, Ryan
, Gonzales, Jon C.
, Lee, Richard G.
, Thacker, Bryan E.
, Mullick, Adam E.
, Ramms, Bastian
, Witztum, Joseph L.
in
Animals
/ Apolipoprotein C-III - blood
/ Apolipoproteins
/ Biomedical research
/ Cardiovascular disease
/ Cholesterol
/ Experiments
/ Female
/ Genotype
/ Heparan sulfate
/ Heparin - pharmacology
/ Hepatocytes - metabolism
/ Ketones - metabolism
/ Laboratory animals
/ Lipid metabolism
/ Lipoproteins
/ Lipoproteins - blood
/ Liver
/ Liver - metabolism
/ Low Density Lipoprotein Receptor-Related Protein-1 - metabolism
/ Low density lipoproteins
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ Mutation
/ Myocardium - metabolism
/ Observations
/ Properties
/ Proteins
/ Receptors, LDL - metabolism
/ Risk Factors
/ Rodents
/ Software
/ Studies
/ Triglycerides - blood
/ Tumor Suppressor Proteins - metabolism
2016
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ApoC-III inhibits clearance of triglyceride-rich lipoproteins through LDL family receptors
Journal Article
ApoC-III inhibits clearance of triglyceride-rich lipoproteins through LDL family receptors
2016
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Overview
Hypertriglyceridemia is an independent risk factor for cardiovascular disease, and plasma triglycerides (TGs) correlate strongly with plasma apolipoprotein C-III (ApoC-III) levels. Antisense oligonucleotides (ASOs) for ApoC-III reduce plasma TGs in primates and mice, but the underlying mechanism of action remains controversial. We determined that a murine-specific ApoC-III-targeting ASO reduces fasting TG levels through a mechanism that is dependent on low-density lipoprotein receptors (LDLRs) and LDLR-related protein 1 (LRP1). ApoC-III ASO treatment lowered plasma TGs in mice lacking lipoprotein lipase (LPL), hepatic heparan sulfate proteoglycan (HSPG) receptors, LDLR, or LRP1 and in animals with combined deletion of the genes encoding HSPG receptors and LDLRs or LRP1. However, the ApoC-III ASO did not lower TG levels in mice lacking both LDLR and LRP1. LDLR and LRP1 were also required for ApoC-III ASO-induced reduction of plasma TGs in mice fed a high-fat diet, in postprandial clearance studies, and when ApoC-III-rich or ApoC-III-depleted lipoproteins were injected into mice. ASO reduction of ApoC-III had no effect on VLDL secretion, heparin-induced TG reduction, or uptake of lipids into heart and skeletal muscle. Our data indicate that ApoC-III inhibits turnover of TG-rich lipoproteins primarily through a hepatic clearance mechanism mediated by the LDLR/LRP1 axis.
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