On the mechanism of drug-induced acceleration of phospholipid translocation in the human erythrocyte membrane

被引:1
|
作者
Bootsveld, A [1 ]
Degenhardt, R [1 ]
Kamp, D [1 ]
Haest, CWM [1 ]
机构
[1] Univ Klinikum, Inst Physiol, D-52057 Aachen, Germany
关键词
erythrocyte membrane; isoflurane; chloroform; hexane; membrane/water partition coefficient; NBD-phospholipid; flip-flop;
D O I
10.1080/09687860400003917
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
Small amphiphilic compounds (M-r<200 Da) such as anaesthetics and hexane derivatives with different polar groups produced a concentration-dependent acceleration of the slow passive transbilayer movement of NBD-labelled phosphatidylcholine in the human erythrocyte membrane. Above a threshold concentration characteristic for each compound, the flip rate gradually increased at increasing concentrations in the medium. For compound concentrations required to produce a defined flip acceleration, corresponding membrane concentrations were estimated using reported octanol/water partition coefficients. The effective threshold membrane concentrations (50-150 mmol l(-1)) varied in the order: hexylamine>isoflurane=hexanoic acid >hexanol =chloroform >hexanethiol = 1,1,2,2-tetrachloroethane >chlorohexane. Apolar hexane, which mainly distributes in the apolar membrane core, was much less effective and supersaturating concentrations were required to enhance flip. Localization of the drug at the lipid-water interface seems to be required for flip acceleration. Such a localization may increase the lateral pressure in this region and the bilayer curvature stress with concomitant decrease of order and rigidity at the interface. This unspecific bilayer perturbation is proposed to enhance the probability of formation of hydrophobic defects in the bilayer, facilitating penetration of the polar head group of the phospholipid into the apolar membrane core.
引用
收藏
页码:315 / 322
页数:8
相关论文
共 50 条
  • [1] DRUG-INDUCED ERYTHROCYTE-MEMBRANE INTERNALIZATION
    BENBASSAT, I
    BENSCH, KG
    SCHRIER, SL
    JOURNAL OF CLINICAL INVESTIGATION, 1972, 51 (07): : 1833 - +
  • [2] MECHANISM OF DRUG-INDUCED ERYTHROCYTE VACUOLE FORMATION
    SCHRIER, SL
    JUNGA, I
    SEEGER, M
    JOURNAL OF LABORATORY AND CLINICAL MEDICINE, 1974, 83 (02): : 215 - 227
  • [3] Effect of antipsychotic medication on the erythrocyte membrane phospholipid translocation
    Nuss, PF
    Tessier, CR
    Wolf, C
    Ferreri, M
    SCHIZOPHRENIA RESEARCH, 2004, 67 (01) : 122 - 122
  • [4] DRUG-INDUCED PHOSPHOLIPID DISTURBANCES
    LULLMANN, H
    LULLMANN.R
    WASSERMANN, O
    DEUTSCHE MEDIZINISCHE WOCHENSCHRIFT, 1973, 98 (35) : 1616 - 1625
  • [5] Out-to-in translocation of butanetriol-containing phospholipid analogs in human erythrocyte membrane
    Puri, V
    Gupta, CM
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1998, 1373 (01): : 59 - 66
  • [7] The anticancer drug chlorambucil interacts with the human erythrocyte membrane and model phospholipid bilayers
    Suwalsky, M
    Hernández, P
    Villena, F
    Sotomayor, CP
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION C-A JOURNAL OF BIOSCIENCES, 1999, 54 (12): : 1089 - 1095
  • [8] ALTERATION OF MEMBRANE PHOSPHOLIPID-BILAYER ORGANIZATION IN HUMAN-ERYTHROCYTES DURING DRUG-INDUCED ENDOCYTOSIS
    SCHRIER, SL
    CHIU, DTY
    YEE, M
    SIZER, K
    LUBIN, B
    JOURNAL OF CLINICAL INVESTIGATION, 1983, 72 (05): : 1698 - 1705
  • [9] DRUG-INDUCED SURFACE-MEMBRANE PHOSPHOLIPID-COMPOSITION IN MURINE FIBROBLASTS
    SCHROEDER, F
    FONTAINE, RN
    FELLER, DJ
    WESTON, KG
    BIOCHIMICA ET BIOPHYSICA ACTA, 1981, 643 (01) : 76 - 88
  • [10] PHOSPHOLIPID ASYMMETRY IN HUMAN ERYTHROCYTE-MEMBRANE
    GORDESKY, SE
    TRENDS IN BIOCHEMICAL SCIENCES, 1976, 1 (09) : 208 - 211