Spontaneous and protein-mediated sterol transfer between intracellular membranes

被引:78
作者
Frolov, A
Woodford, JK
Murphy, EJ
Billheimer, JT
Schroeder, F
机构
[1] TEXAS A&M UNIV,TVMC,DEPT PHYSIOL & PHARMACOL,COLLEGE STN,TX 77843
[2] ANDREW JERGENS CO,CINCINNATI,OH 45214
[3] DUPONT MERCK PHARMACEUT CO,CARDIOVASC DEPT,WILMINGTON,DE 19898
关键词
D O I
10.1074/jbc.271.27.16075
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
Relatively little is known regarding intracellular cholesterol trafficking pathways. To resolve some of these potential pathways, spontaneous and protein-mediated sterol transfer was examined between different donor acceptor membrane pairs in vitro using L-cell fibroblast plasma membrane (PM) and microsomal (MICRO) and mitochondrial (MITO) membranes, Several new exciting insights were provided, First, the initial rate of spontaneous molecular sterol transfer was more dependent on the type of acceptor than donor membrane, i.e. spontaneous intracellular sterol trafficking was vectorial. Therefore, the rate of sterol desorption from the donor membrane was not necessarily the rate-limiting step in molecular sterol transfer. Second, the rate of molecular sterol transfer was not obligatorily correlated with the direction of the cholesterol gradient. For example, although PM had a 3.2-fold higher cholesterol/phospholipid ratio than MITO, spontaneous sterol transfer was 4-5 fold faster up (MITO to PM) rather than down (PM to MITO) the concentration gradient. Third, sterol carrier protein-2 differentially stimulated the initial rate of sterol transfer for all donor-acceptor combinations, being most effective with PM donors: PM-MICRO, 27-fold; and PM-MITO, Ig-fold, Sterol carrier protein-2 was less effective in enhancing sterol transfer in the reverse direction, i.e. MICRO-PM and MITO-PM (5- and 4-fold, respectively), Fourth, liver fatty acid-binding protein was limited in stimulating the initial rate of sterol transfer from PM to PM (1.5-fold), from PM to MITO (3-fold), and from MICRO to MITO (3-fold). In summary, these observations present important insights into potential sterol trafficking pathways between the major membrane components of the cell.
引用
收藏
页码:16075 / 16083
页数:9
相关论文
共 64 条
[1]  
Ames BN., 1966, Methods in Enzymology, P115, DOI DOI 10.1016/0076-6879(66)08014-5
[2]  
Billheimer J T, 1990, Subcell Biochem, V16, P301
[3]   EFFECT OF LIPID-COMPOSITION ON THE TRANSFER OF STEROLS MEDIATED BY NONSPECIFIC LIPID TRANSFER PROTEIN (STEROL CARRIER PROTEIN-2) [J].
BILLHEIMER, JT ;
GAYLOR, JL .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1046 (02) :136-143
[4]  
BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
[5]  
BLOCH K, 1991, BIOCH LIPIDS LIPOPRO, P363
[6]   FATTY ACID-BINDING PROTEINS .10. SUBCELLULAR-DISTRIBUTION OF CARDIAC FATTY ACID-BINDING PROTEIN IN BOVINE HEART-MUSCLE AND QUANTITATION WITH AN ENZYME-LINKED IMMUNOSORBENT-ASSAY [J].
BORCHERS, T ;
UNTERBERG, C ;
RUDEL, H ;
ROBENEK, H ;
SPENER, F .
BIOCHIMICA ET BIOPHYSICA ACTA, 1989, 1002 (01) :54-61
[7]   FATTY-ACID-BINDING PROTEINS .11. COMPARTMENTATION OF HEPATIC FATTY-ACID-BINDING PROTEIN IN LIVER-CELLS AND ITS EFFECT ON MICROSOMAL PHOSPHATIDIC-ACID BIOSYNTHESIS [J].
BORDEWICK, U ;
HEESE, M ;
BORCHERS, T ;
ROBENEK, H ;
SPENER, F .
BIOLOGICAL CHEMISTRY HOPPE-SEYLER, 1989, 370 (03) :229-238
[8]   CHOLESTEROL AND THE GOLGI-APPARATUS [J].
BRETSCHER, MS ;
MUNRO, S .
SCIENCE, 1993, 261 (5126) :1280-1281
[9]  
BROWN MS, 1974, J BIOL CHEM, V249, P7306
[10]  
BROWN RE, 1992, BIOCHIM BIOPHYS ACTA, V1113, P3375