Selective uptake of cholesteryl ester from low density lipoprotein is involved in HepG2 cell cholesterol homeostasis

被引:10
作者
Charest, MC [1 ]
Rhainds, D [1 ]
Falstrault, L [1 ]
Matzouranis, T [1 ]
Brissette, L [1 ]
机构
[1] Univ Quebec, Dept Sci Biol, Montreal, PQ H3C 3P8, Canada
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1999年 / 263卷 / 02期
关键词
cholesterol; cholesteryl ester; homeostasis; low density lipoprotein;
D O I
10.1046/j.1432-1327.1999.00527.x
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
Low density Lipoprotein (LDL) can follow either a holoparticle uptake pathway, initiated by the LDL receptor (LDLr), and be completely degraded, or it can deliver its cholesteryl esters (CE) selectively to HepG2 cells. Although high density Lipoprotein-CE selective uptake has been shown to be linked to cell. cholesterol homeostasis in nonhepatic cells, there is no available information on the effect of LDL-CE selective uptake on hepatic cell cholesterol homeostasis. In order to define the role of the LDL-CE selective uptake pathway in hepatic cell cholesterol homeostasis, we used a cellular model that expresses constitutively a LDLr antisense mRNA and that shows LDLr activity at 31% the normal level (HepG2-all cells). The addition of a specific antibody anti-LDLr (IgG-C7) reduces LDL protein degradation (LDLr activity) to 7%. This cellular model therefore reflects, above all, LDL-CE selective uptake activity when incubated with LDL. The inactivation of LDLr reduces LDL-protein association by 78% and LDL-CE association by only 43%. The LDL-CE selective uptake was not reduced by the inactivation of LDLr. The activities of the various enzymes involved in cell cholesterol homeostasis were measured in normal and LDLr-deficient cells during incubation in the absence or presence of LDL as a cholesterol source. Essentially, 3-hydroxy-3-methylglutaryl coenzyme A reductase and acyl coenzyme A:cholesterol acyltransferase (ACAT) activities responded to LDL in LDLr-deficient cells as well as in normal HepG2 cells. Inhibition of lysosomal hydrolysis with chloroquine abolished the effect measured on ACAT activity in the presence of LDL, suggesting that CE of LDL,but not free cholesterol, maintains cell cholesterol homeostasis. Thus, in HepG2 cells, when LDLr function is virtually abolished, LDL-CE selective uptake is coupled to cell cholesterol homeostasis.
引用
收藏
页码:402 / 409
页数:8
相关论文
共 45 条
[31]  
LOWRY OH, 1951, J BIOL CHEM, V193, P265
[32]   EFFICIENT TRACE-LABELLING OF PROTEINS WITH IODINE [J].
MCFARLANE, AS .
NATURE, 1958, 182 (4627) :53-53
[33]   Regulation of cholesterol responsive genes in ovary cells: Impact of cholesterol delivery systems [J].
Medicherla, S ;
Azhar, S ;
Cooper, A ;
Reaven, E .
BIOCHEMISTRY, 1996, 35 (20) :6243-6250
[34]   Characterization of CLA-1, a human homologue of rodent scavenger receptor BI, as a receptor for high density lipoprotein and apoptotic thymocytes [J].
Murao, K ;
Terpstra, V ;
Green, SR ;
Kondratenko, N ;
Steinberg, D ;
Quehenberger, O .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (28) :17551-17557
[35]  
MYANT NB, 1977, J LIPID RES, V18, P135
[36]  
PITTMAN RC, 1982, J BIOL CHEM, V257, P7994
[37]   ASSAY OF CHOLESTEROL 7-ALPHA-HYDROXYLASE ACTIVITY IN RAT HEPATOCYTES IN PRIMARY MONOLAYER-CULTURE [J].
PRINCEN, HMG ;
MEIJER, P ;
KWEKKEBOOM, J ;
KEMPEN, HJM .
ANALYTICAL BIOCHEMISTRY, 1988, 171 (01) :158-165
[38]   DEXAMETHASONE REGULATES BILE-ACID SYNTHESIS IN MONOLAYER-CULTURES OF RAT HEPATOCYTES BY INDUCTION OF CHOLESTEROL 7-ALPHA-HYDROXYLASE [J].
PRINCEN, HMG ;
MEIJER, P ;
HOFSTEE, B .
BIOCHEMICAL JOURNAL, 1989, 262 (01) :341-348
[39]   SELECTIVE UPTAKE OF LOW-DENSITY LIPOPROTEIN-ASSOCIATED CHOLESTERYL ESTERS BY HUMAN FIBROBLASTS, HUMAN HEPG2 HEPATOMA-CELLS AND J774 MACROPHAGES IN CULTURE [J].
RINNINGER, F ;
BRUNDERT, M ;
JACKLE, S ;
KAISER, T ;
GRETEN, H .
BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1995, 1255 (02) :141-153
[40]   AN ALTERNATIVE PROCEDURE FOR INCORPORATING RADIOLABELED CHOLESTERYL ESTER INTO HUMAN-PLASMA LIPOPROTEINS INVITRO [J].
ROBERTS, DCK ;
MILLER, NE ;
PRICE, SGL ;
CROOK, D ;
CORTESE, C ;
LAVILLE, A ;
MASANA, L ;
LEWIS, B .
BIOCHEMICAL JOURNAL, 1985, 226 (01) :319-322