MODULATION OF THE INTERBILAYER HYDRATION PRESSURE BY THE ADDITION OF DIPOLES AT THE HYDROCARBON WATER INTERFACE

被引:83
作者
SIMON, SA
MCINTOSH, TJ
MAGID, AD
NEEDHAM, D
机构
[1] DUKE UNIV,MED CTR,DEPT ANESTHESIOL,DURHAM,NC 27710
[2] DUKE UNIV,MED CTR,DEPT CELL BIOL,DURHAM,NC 27710
[3] DUKE UNIV,DEPT MECH ENGN,DURHAM,NC 27706
关键词
D O I
10.1016/S0006-3495(92)81883-0
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The effects of the cholesterol analog 5-alpha-cholestan-3-beta-ol-6-one (6-ketocholestanol) on bilayer structure, bilayer cohesive properties, and interbilayer repulsive pressures have been studied by a combination of x-ray diffraction, pipette aspiration, and dipole potential experiments. It is found that 6-ketocholestanol, which has a similar structure to cholesterol except with a keto moiety at the 6 position of the B ring, has quite different effects than cholesterol on bilayer organization and cohesive properties. Unlike cholesterol, 6-ketocholestanol does not appreciably modify the thickness of liquid-crystalline egg phosphatidylcholine (EPC) bilayers, and causes a much smaller increase in bilayer compressibility modulus than does cholesterol, These data imply that 6-ketocholestanol has both its hydroxyl and keto moieties situated near the water-hydrocarbon interface thus making its orientation in the bilayer different from cholesterol's. The addition of equimolar 6-ketocholestanol into EPC bilayers increases the magnitude, but not the decay length, of the exponentially decaying repulsive hydration pressure between adjacent bilayers. Incorporation of equimolar 6-ketocholestanol into EPC monolayers increases the dipole potential by approximately 300 mV. These data are consistent with our previous observation that the magnitude of the hydration pressure is proportional to the square of the dipole potential, These results mean that 6-ketocholestanol, despite its location in the bilayer hydrocarbon region, approximately 10 angstrom from the physical edge of the bilayer, modifies the organization of interlamellar water. We argue that the incorporation of 6-ketocholestanol into EPC bilayers increases the hydration pressure, at least in part, by increasing the electric field strength in the polar head group region.
引用
收藏
页码:786 / 799
页数:14
相关论文
共 74 条
[1]  
ADAM NK, 1968, PHYSICS CHEM SURFACE, P75
[2]   ELECTROSTATIC INTERACTIONS AMONG HYDROPHOBIC IONS IN LIPID BILAYER MEMBRANES [J].
ANDERSEN, OS ;
FELDBERG, S ;
NAKADOMARI, H ;
LEVY, S ;
MCLAUGHLIN, S .
BIOPHYSICAL JOURNAL, 1978, 21 (01) :35-70
[3]   A MECHANISM FOR THE HYDRATION FORCE DEMONSTRATED IN A MODEL SYSTEM [J].
ATTARD, P ;
BATCHELOR, MT .
CHEMICAL PHYSICS LETTERS, 1988, 149 (02) :206-211
[4]   INTERACTION OF ELECTRIC DIPOLES WITH PHOSPHOLIPID HEAD GROUPS - A H-2 AND P-31 NMR-STUDY OF PHLORETIN AND PHLORETIN ANALOGS IN PHOSPHATIDYLCHOLINE MEMBRANES [J].
BECHINGER, B ;
SEELIG, J .
BIOCHEMISTRY, 1991, 30 (16) :3923-3929
[5]   HYDRATION FORCES AS A RESULT OF NONLOCAL WATER POLARIZABILITY [J].
BELAYA, ML ;
FEIGELMAN, MV ;
LEVADNY, VG .
CHEMICAL PHYSICS LETTERS, 1986, 126 (3-4) :361-364
[6]   TREATMENT OF LOW ANGLE X-RAY DATA FROM PLANAR AND CONCENTRIC MULTILAYERED STRUCTURES [J].
BLAUROCK, AE ;
WORTHINGTON, CR .
BIOPHYSICAL JOURNAL, 1966, 6 (03) :305-+
[7]  
BNOCKRIS JOM, 1973, MODERN ELECTROCHEMIS, V2, P779
[8]   ION-INDUCED CHANGES IN HEAD GROUP CONFORMATION OF LECITHIN BILAYERS [J].
BROWN, MF ;
SEELIG, J .
NATURE, 1977, 269 (5630) :721-723
[9]   INFLUENCE OF CHOLESTEROL ON POLAR REGION OF PHOSPHATIDYLCHOLINE AND PHOSPHATIDYLETHANOLAMINE BILAYERS [J].
BROWN, MF ;
SEELIG, J .
BIOCHEMISTRY, 1978, 17 (02) :381-384
[10]   HYDRATION OF NONCHARGED LIPID BILAYER-MEMBRANES - THEORY AND EXPERIMENTS WITH PHOSPHATIDYLETHANOLAMINES [J].
CEVC, G ;
MARSH, D .
BIOPHYSICAL JOURNAL, 1985, 47 (01) :21-31