Reversal of hyperlipidaemia in apolipoprotein C1 transgenic mice by adenovirus-mediated gene delivery of the low-density-lipoprotein receptor, but not by the very-low-density-lipoprotein receptor

被引:48
作者
Jong, MC
Van Dijk, KW
Dahlmans, VEH
Van der Boom, H
Kobayashi, K
Oka, K
Siest, G
Chan, L
Hofker, MH
Havekes, LM [1 ]
机构
[1] TNO, Gaubius Lab, NL-2301 CE Leiden, Netherlands
[2] Leiden Univ, Med Ctr, Dept Human Genet, MGC, NL-2300 RC Leiden, Netherlands
[3] Baylor Coll Med, Childrens Nutr Res Ctr, Dept Cell Biol, Houston, TX 77030 USA
[4] Baylor Coll Med, Childrens Nutr Res Ctr, Dept Med, Houston, TX 77030 USA
[5] ARS, USDA, Childrens Nutr Res Ctr, Houston, TX 77030 USA
[6] Ctr Med, F-54501 Nancy, France
[7] Ctr Med Prevent, F-54501 Nancy, France
[8] Leiden Univ, Med Ctr, Dept Cardiol, NL-2300 RC Leiden, Netherlands
[9] Leiden Univ, Med Ctr, Dept Internal Med, NL-2300 RC Leiden, Netherlands
关键词
apolipoprotein C; gene therapy; lipoproteins; receptors;
D O I
10.1042/0264-6021:3380281
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have shown previously that human apolipoprotein (apo)C1 transgenic mice exhibit hyperlipidaemia, due primarily to an impaired clearance of very-low-density lipoprotein (VLDL) particles from the circulation. In the absence of at least the low-density-lipoprotein receptor (LDLR), it was shown that APOC1 overexpression in transgenic mice inhibited the hepatic uptake of VLDL via the LDLR-related protein. In the present study, we have now examined the effect of apoC1 on the binding of lipoproteins to both the VLDL receptor (VLDLR) and the LDLR, The binding specificity of the VLDLR and LDLR for apoC1-enriched lipoprotein particles was examined in vivo through adenovirus-mediated gene transfer of the VLDLR and the LDLR [giving rise to adenovirus-containing (Ad)-VLDLR and Ad-LDLR respectively] in APOC1 transgenic mice, LDLR-deficient (LDLR-/-) mice and wild-type mice, Remarkably, Ad-VLDLR treatment did not reduce hyperlipidaemia in transgenic mice overexpressing human APOC1, irrespective of both the level of transgenic expression and the presence of the LDLR, whereas Ad-VLDLR treatment did reverse hyperlipidaemia in LDLR-/- and wild-type mice. On the other hand, Ad-LDLR treatment strongly decreased plasma lipid levels in these APOC1 transgenic mice. These results suggest that apoC1 inhibits the clearance of lipoprotein particles via the VLDLR, but not via the LDLR. This hypothesis is corroborated by in vitro binding studies. Chinese hamster ovary (CHO) cells expressing the VLDLR (CHO-VLDLR) or LDLR (CHO-LDLR) bound less APOC1 transgenic VLDL than wild-type VLDL. Intriguingly, however, enrichment with apoE enhanced dose-dependently the binding of wild-type VLDL to CHO-VLDLR cells (up to 5-fold), whereas apoE did not enhance the binding of APOC1 transgenic VLDL to these cells. In contrast, for binding to CHO-LDLR cells, both wild-type and APOC1 transgenic VLDL were stimulated upon enrichment with apoE. From these studies, we conclude that apoC1 specifically inhibits the apoE-mediated binding of triacylglycerol-rich lipoprotein particles to the VLDLR, whereas apoC1-enriched lipoproteins can still bind to the LDLR. The variability in specificity of these lipoprotein receptors for apoC1-containing lipoprotein particles provides further evidence for a regulatory role of apoC1 in the delivery of lipoprotein constituents to different tissues on which these receptors are located.
引用
收藏
页码:281 / 287
页数:7
相关论文
共 35 条
[1]  
BATTEY FD, 1994, J BIOL CHEM, V269, P23268
[2]   Lipoprotein lipase (EC 3.1.1.34) targeting of lipoproteins to receptors [J].
Beisiegel, U ;
Heeren, J .
PROCEEDINGS OF THE NUTRITION SOCIETY, 1997, 56 (02) :731-737
[3]   METABOLISM OF VERY LOW-DENSITY LIPOPROTEIN PROTEINS .1. PRELIMINARY IN-VITRO AND IN-VIVO OBSERVATIONS [J].
BILHEIMER, DW ;
LEVY, RI ;
EISENBERG, S .
BIOCHIMICA ET BIOPHYSICA ACTA, 1972, 260 (02) :212-+
[4]   MODULATION OF LIPOPROTEIN B BINDING TO THE LDL RECEPTOR BY EXOGENOUS LIPIDS AND APOLIPOPROTEIN-CI, APOLIPOPROTEIN-CII, APOLIPOPROTEIN-CIII, AND APOLIPOPROTEIN-E [J].
CLAVEY, V ;
LESTAVELDELATTRE, S ;
COPIN, C ;
BARD, JM ;
FRUCHART, JC .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 1995, 15 (07) :963-971
[5]   NORMAL PLASMA-LIPOPROTEINS AND FERTILITY IN GENE-TARGETED MICE HOMOZYGOUS FOR A DISRUPTION IN THE GENE ENCODING VERY-LOW-DENSITY LIPOPROTEIN RECEPTOR [J].
FRYKMAN, PK ;
BROWN, MS ;
YAMAMOTO, T ;
GOLDSTEIN, JL ;
HERZ, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (18) :8453-8457
[6]   CLONING OF A CDNA-ENCODING A PUTATIVE HUMAN VERY-LOW-DENSITY LIPOPROTEIN APOLIPOPROTEIN-E RECEPTOR AND ASSIGNMENT OF THE GENE TO CHROMOSOME-9PTER-P23 [J].
GAFVELS, ME ;
CAIRD, M ;
BRITT, D ;
JACKSON, CL ;
PATTERSON, D ;
STRAUSS, JF .
SOMATIC CELL AND MOLECULAR GENETICS, 1993, 19 (06) :557-569
[7]   Lipoprotein lipase stimulates the binding and uptake of moderately oxidized low-density lipoprotein by J774 macrophages [J].
Hendriks, WL ;
vanderBoom, H ;
vanVark, LC ;
Havekes, LM .
BIOCHEMICAL JOURNAL, 1996, 314 :563-568
[8]   ADENOVIRUS-MEDIATED TRANSFER OF LOW-DENSITY-LIPOPROTEIN RECEPTOR GENE ACUTELY ACCELERATES CHOLESTEROL CLEARANCE IN NORMAL MICE [J].
HERZ, J ;
GERARD, RD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (07) :2812-2816
[9]   HYPERCHOLESTEROLEMIA IN LOW-DENSITY-LIPOPROTEIN RECEPTOR KNOCKOUT MICE AND ITS REVERSAL BY ADENOVIRUS-MEDIATED GENE DELIVERY [J].
ISHIBASHI, S ;
BROWN, MS ;
GOLDSTEIN, JL ;
GERARD, RD ;
HAMMER, RE ;
HERZ, J .
JOURNAL OF CLINICAL INVESTIGATION, 1993, 92 (02) :883-893
[10]   In the absence of the low density lipoprotein receptor, human apolipoprotein C1 overexpression in transgenic mice inhibits the hepatic uptake of very low density lipoproteins via a receptor-associated protein-sensitive pathway [J].
Jong, MC ;
Dahlmans, VEH ;
vanGorp, PJJ ;
vanDijk, KW ;
Breuer, ML ;
Hofker, MH ;
Havekes, LM .
JOURNAL OF CLINICAL INVESTIGATION, 1996, 98 (10) :2259-2267