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PMID: 8912683 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Increased selective uptake in vivo and in vitro of oxidized cholesteryl esters from high-density lipoprotein by rat liver parenchymal cells.

The Biochemical journal ·Vol. 319 ( Pt 2) ·1996-10-15 ·Pages 471-6

Fluiter K, Vietsch H, Biessen EA, Kostner GM, van Berkel TJ, Sattler W

Abstract

Oxidation of low-density lipoprotein (LDL) leads initially to the formation of LDL-associated cholesteryl ester hydroperoxides (CEOOH). LDL-associated CEOOH can be transferred to high-density lipoprotein (HDL), and HDL-associated CEOOH are rapidly reduced to the corresponding hydroxides (CEOH) by an intrinsic peroxidase-like activity. We have now performed in vivo experiments to quantify the clearance rates and to identify the uptake sites of HDL-associated [3H]Ch18:2-OH in rats. Upon injection into rats, HDL-associated [3H]Ch18:2-OH is removed more rapidly from the circulation than HDL-associated [3H]Ch18:2. Two minutes after administration of [3H]Ch18:2-OH-HDL, 19.6 +/- 2.6% (S.E.M.; n = 4) of the label was taken up by the liver as compared with 2.4 +/- 0.25% (S.E.M.; n = 4) for [3H]Ch18:2-HDL. Organ distribution studies indicated that only the liver and adrenals exhibited preferential uptake of [3H]Ch18:2-OH as compared with [3H]Ch18:2, with the liver as the major site of uptake. A cell-separation procedure, employed 10 min after injection of [3H]Ch18:2-OH-HDL or [3H]Ch18:2-HDL, demonstrated that within the liver only parenchymal cells take up HDL-CE by the selective uptake pathway. Selective uptake by parenchymal cells of [3H]Ch18:2-OH was 3-fold higher than that of [3H]Ch18:2, while Kupffer and endothelial cell uptake of the lipid tracers reflected HDL holoparticle uptake (as analysed with iodinated versus cholesteryl ester-labelled HDL). The efficient uptake of [3H]Ch18:2-OH by parenchymal cells was coupled to a 3-fold increase in rate of radioactive bile acid secretion from [3H]Ch18:2-OH-HDL as compared with [3H]Ch18:2-HDL. In vitro studies with freshly isolated parenchymal cells showed that the association of [3H]Ch18:2-OH-HDL at 37 degrees C exceeded [3H]Ch18:2-HDL uptake almost 4-fold. Our results indicate that HDL-associated CEOH are efficiently and selectively removed from the blood circulation by the liver in vivo. The selective liver uptake is specifically exerted by parenchymal cells and coupled to a rapid biliary secretion pathway. The liver uptake and biliary secretion route may allow HDL to function as an efficient protection system against potentially atherogenic CEOOH.

MeSH Terms
Animals Cholesterol Esters/metabolism In Vitro Techniques Lipoproteins, HDL/metabolism Lipoproteins, LDL/metabolism Liver/metabolism Male Organ Specificity Rats Rats, Wistar
Chemicals
Cholesterol Esters Lipoproteins, HDL Lipoproteins, LDL oxidized low density lipoprotein
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Fluiter K
Division of Biopharmaceutics, Leiden/Amsterdam Center for Drug Research, University of Leiden, Sylvius Laboratories, The Netherlands.
Vietsch H
Biessen E A
Kostner G M
van Berkel T J
Sattler W
References (38)
38 references, click to expand
  1. Beyond cholesterol. Modifications of low-density lipoprotein that increase its atherogenicity.
    N Engl J Med. 1989 Apr 6;320(14):915-24 PMID: 2648148
  2. A method for defining the stages of low-density lipoprotein oxidation by the separation of cholesterol- and cholesteryl ester-oxidation products using HPLC.
    Anal Biochem. 1993 Aug 15;213(1):79-89 PMID: 8238886
  3. Prevention of in vitro low-density lipoprotein oxidation by an albumin-containing Lp A-I subfraction.
    Biochim Biophys Acta. 1995 Mar 2;1255(1):31-8 PMID: 7893735
  4. Binding of high density lipoproteins to cell receptors promotes translocation of cholesterol from intracellular membranes to the cell surface.
    J Biol Chem. 1987 Sep 25;262(27):12904-7 PMID: 2820959
  5. Separation of plasma lipoproteins by density-gradient ultracentrifugation.
    Anal Biochem. 1975 May 12;65(1-2):42-9 PMID: 165752
  6. Selective association of lipoprotein cholesteryl esters with liver plasma membranes.
    Biochim Biophys Acta. 1993 Feb 24;1166(2-3):284-99 PMID: 8443247
  7. Cholesterol flux between cells and high density lipoprotein. Lack of relationship to specific binding of the lipoprotein to the cell surface.
    J Biol Chem. 1987 Sep 15;262(26):12557-64 PMID: 3040756
  8. Autoxidation of human low density lipoprotein: loss of polyunsaturated fatty acids and vitamin E and generation of aldehydes.
    J Lipid Res. 1987 May;28(5):495-509 PMID: 3598395
  9. Protection of low-density lipoprotein against oxidative modification by high-density lipoprotein associated paraoxonase.
    Atherosclerosis. 1993 Dec;104(1-2):129-35 PMID: 8141836
  10. Early incorporation of cell-derived cholesterol into pre-beta-migrating high-density lipoprotein.
    Biochemistry. 1988 Jan 12;27(1):25-9 PMID: 3126809
  11. Binding of transition metals by apolipoprotein A-I-containing plasma lipoproteins: inhibition of oxidation of low density lipoproteins.
    Proc Natl Acad Sci U S A. 1992 Aug 1;89(15):6993-7 PMID: 1495991
  12. In vitro and in vivo evidence for the role of HDL in reverse cholesterol transport.
    Biochim Biophys Acta. 1994 Jan 11;1225(2):125-34 PMID: 8280780
  13. Rapid isolation of lipoproteins and assessment of their peroxidation by high-performance liquid chromatography postcolumn chemiluminescence.
    Methods Enzymol. 1994;233:469-89 PMID: 8015482
  14. Ubiquinol-10 protects human low density lipoprotein more efficiently against lipid peroxidation than does alpha-tocopherol.
    Proc Natl Acad Sci U S A. 1991 Mar 1;88(5):1646-50 PMID: 2000375
  15. Cholesterol esters selectively delivered in vivo by high-density-lipoprotein subclass LpA-I to rat liver are processed faster into bile acids than are LpA-I/A-II-derived cholesterol esters.
    Biochem J. 1993 Jun 15;292 ( Pt 3):819-23 PMID: 8318010
  16. HDL, its enzymes and its potential to influence lipid peroxidation.
    Atherosclerosis. 1995 Jun;115(2):243-53 PMID: 7661883
  17. Manganous chloride spray reagent for cholesterol and bile acids on thin-layer chromatograms.
    J Chromatogr. 1970 Dec;53(2):389-90 PMID: 5498853
  18. Efficient trace-labelling of proteins with iodine.
    Nature. 1958 Jul 5;182(4627):53 PMID: 13566175
  19. The metabolism of very low density lipoprotein proteins. I. Preliminary in vitro and in vivo observations.
    Biochim Biophys Acta. 1972 Feb 21;260(2):212-21 PMID: 4335139
  20. Subfractionation of human high density lipoproteins by heparin-Sepharose affinity chromatography.
    J Lipid Res. 1980 Mar;21(3):316-25 PMID: 7381326
  21. Selective uptake of cholesteryl esters from apolipoprotein-E-free high-density lipoproteins by rat parenchymal cells in vivo is efficiently coupled to bile acid synthesis.
    Biochem J. 1991 Dec 1;280 ( Pt 2):359-65 PMID: 1747108
  22. Dissociation of tissue uptake of cholesterol ester from that of apoprotein A-I of rat plasma high density lipoprotein: selective delivery of cholesterol ester to liver, adrenal, and gonad.
    Proc Natl Acad Sci U S A. 1983 Sep;80(17):5435-9 PMID: 6412229
  23. Specific targeting of high density lipoproteins to liver hepatocytes by incorporation of a tris-galactoside-terminated cholesterol derivative.
    J Biol Chem. 1985 Oct 5;260(22):12203-7 PMID: 4044592
  24. Enterohepatic circulation in the rat.
    Gastroenterology. 1985 Feb;88(2):403-11 PMID: 3965330
  25. In vivo and in vitro uptake and degradation of acetylated low density lipoprotein by rat liver endothelial, Kupffer, and parenchymal cells.
    J Biol Chem. 1983 Oct 25;258(20):12221-7 PMID: 6313644
  26. High density lipoprotein is the major carrier of lipid hydroperoxides in human blood plasma from fasting donors.
    Proc Natl Acad Sci U S A. 1992 Nov 1;89(21):10316-20 PMID: 1332045
  27. Lipoprotein metabolism in the macrophage: implications for cholesterol deposition in atherosclerosis.
    Annu Rev Biochem. 1983;52:223-61 PMID: 6311077
  28. Exchange of oxidized cholesteryl linoleate between LDL and HDL mediated by cholesteryl ester transfer protein.
    J Lipid Res. 1995 Sep;36(9):2017-26 PMID: 8558089
  29. A rapid method of total lipid extraction and purification.
    Can J Biochem Physiol. 1959 Aug;37(8):911-7 PMID: 13671378
  30. Cholesterylester hydroperoxide reducing activity associated with isolated high- and low-density lipoproteins.
    Free Radic Biol Med. 1995 Mar;18(3):421-9 PMID: 9101232
  31. Gas chromatography-mass spectrometry assays for lipid peroxides.
    Methods Enzymol. 1990;186:388-98 PMID: 2233306
  32. Plasma factors affecting the in vitro conversion of high-density lipoproteins labeled with a non-transferable marker.
    Biochim Biophys Acta. 1995 Jan 3;1254(1):13-21 PMID: 7811741
  33. The plasma lecithins:cholesterol acyltransferase reaction.
    J Lipid Res. 1968 Mar;9(2):155-67 PMID: 4868699
  34. Protein measurement with the Folin phenol reagent.
    J Biol Chem. 1951 Nov;193(1):265-75 PMID: 14907713
  35. A nonendocytotic mechanism for the selective uptake of high density lipoprotein-associated cholesterol esters.
    J Biol Chem. 1987 Feb 25;262(6):2443-50 PMID: 2434485
  36. Cholesterol transport between cells and high-density lipoproteins.
    Biochim Biophys Acta. 1991 Oct 1;1085(3):273-98 PMID: 1911862
  37. High density lipoprotein apolipoproteins mediate removal of sterol from intracellular pools but not from plasma membranes of cholesterol-loaded fibroblasts.
    Arterioscler Thromb. 1991 Mar-Apr;11(2):403-14 PMID: 1998658
  38. Greater selective uptake by Hep G2 cells of high-density lipoprotein cholesteryl ester hydroperoxides than of unoxidized cholesteryl esters.
    Biochem J. 1993 Sep 15;294 ( Pt 3):771-8 PMID: 8379932
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1996-10-15
Pages
471-6
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1217792
Subset
IM
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