Monitoring lipid membrane translocation of sodium dodecyl sulfate by isothermal titration calorimetry

被引:56
作者
Keller, S
Heerklotz, H
Blume, A
机构
[1] FMP, Res Inst Mol Pharmacol, D-13125 Berlin, Germany
[2] Univ Basel, Bioctr, Dept Biophys Chem, CH-4056 Basel, Switzerland
[3] Univ Halle Wittenberg, Inst Phys Chem, D-06108 Halle, Germany
关键词
D O I
10.1021/ja056389d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We establish high-sensitivity isothermal titration calorimetry (ITC) as a fast, reliable, and versatile tool for assessing membrane translocation of charged compounds. A combination of ITC uptake and release titrations can discriminate between the two extreme cases of half-sided binding and complete transbilayer equilibration on the experimental time scale. To this end, we derive a general fit function for both assays that allows for incorporation of different membrane partitioning models. Electrostatic effects are taken into account with the aid of Gouy-Chapman theory, thus rendering uptake and release experiments amenable to the investigation of charged solutes. This is exemplified for the flip-flop of the anionic detergent sodium dodecyl sulfate (SIDS) across the membranes of 100-nm-diameter unilamellar vesicles composed of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) in aqueous solution (10 mM phosphate buffer, 154 mM NaCl, pH 7.4). If repulsive electrostatic forces are accounted for adequately, SIDS binding to POPC membranes can be evaluated on the basis of ideal mixing in all phases. At 25 degrees C, the intrinsic partition coefficient between the interfacial aqueous phase and the membrane amounts to 3.5 x 10(6); however, detergent flip-flop is negligibly slow under these conditions. Raising the temperature to 65 degrees C lowers the intrinsic partition coefficient to 1.4 x 10(6) but enables rapid transbilayer distribution of the detergent and, therefore, binding to or desorption from both membrane leaflets. Thus, combining a surface partition equilibrium with simple electrostatic theory appears highly useful in monitoring transmembrane movement of ionic compounds by ITC, thereby eliminating the need for specific reporter groups.
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页码:1279 / 1286
页数:8
相关论文
共 38 条
[1]   CA-2+ BINDING TO PHOSPHATIDYLCHOLINE BILAYERS AS STUDIED BY DEUTERIUM MAGNETIC-RESONANCE - EVIDENCE FOR THE FORMATION OF A CA-2+ COMPLEX WITH 2 PHOSPHOLIPIDMOLECULES [J].
ALTENBACH, C ;
SEELIG, J .
BIOCHEMISTRY, 1984, 23 (17) :3913-3920
[2]  
APELPAZ M, 2005, UNPUB
[3]  
AVEYARD R, 1973, INTRO PRINCIPLES SUR, pCH2
[4]   A critical reassessment of penetratin translocation across lipid membranes [J].
Bárány-Wallje, E ;
Keller, S ;
Serowy, S ;
Geibel, S ;
Pohl, P ;
Bienert, M ;
Dathe, M .
BIOPHYSICAL JOURNAL, 2005, 89 (04) :2513-2521
[5]   MELITTIN BINDING TO MIXED PHOSPHATIDYLGLYCEROL PHOSPHATIDYLCHOLINE MEMBRANES [J].
BESCHIASCHVILI, G ;
SEELIG, J .
BIOCHEMISTRY, 1990, 29 (01) :52-58
[6]   A step-by-step guide to non-linear regression analysis of experimental data using a Microsoft Excel spreadsheet [J].
Brown, AM .
COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2001, 65 (03) :191-200
[7]  
CAMBRIDGE SB, IN PRESS
[8]  
Cambridge SB, 2005, DYNAMIC STUDIES IN BIOLOGY: PHOTOTRIGGERS, PHOTOSWITCHES AND CAGED BIOMOLECULES, P532
[9]   Transbilayer movement of sodium dodecyl sulfate in large unilamellar phospholid vesicles [J].
Cócera, M ;
López, O ;
Estelrich, J ;
Parra, JL ;
de la Maza, A .
LANGMUIR, 1999, 15 (20) :6609-6612
[10]   Trojan peptides: the penetratin system for intracellular delivery [J].
Derossi, D ;
Chassaing, G ;
Prochiantz, A .
TRENDS IN CELL BIOLOGY, 1998, 8 (02) :84-87