Artículos de revistas
Resistance Of Human Erythrocyte Membranes To Triton X-100 And C 12e8
Registro en:
Journal Of Membrane Biology. , v. 227, n. 1, p. 39 - 48, 2009.
222631
10.1007/s00232-008-9142-4
2-s2.0-58149179942
Autor
Crepaldi Domingues C.
Ciana A.
Buttafava A.
Balduini C.
De Paula E.
Minetti G.
Institución
Resumen
Lipid rafts are microdomains enriched in cholesterol and sphingolipids that contain specific membrane proteins. The resistance of domains to extraction by nonionic detergents at 4°C is the commonly used method to characterize these structures that are operationally defined as detergent-resistant membranes (DRMs). Because the selectivity of different detergents in defining membrane rafts has been questioned, we have compared DRMs from human erythrocytes prepared with two detergents: Triton X-100 and C12E8. The DRMs obtained presented a cholesterol/protein mass ratio three times higher than in the whole membrane. Flotillin-2 was revealed in trace amounts in DRMs obtained with C12E8, but it was almost completely confined within the DRM fraction with Triton X-100. Differently, stomatin was found distributed in DRM and non-DRM fractions for both detergents. We have also measured the order parameter (S) of nitroxide spin labels inserted into DRMs by means of electron paramagnetic resonance. The 5- and 16-stearic acid spin label revealed significantly higher S values for DRMs obtained with either Triton X-100 or C12E8 in comparison to intact cells, while the difference in the S values between Triton X-100 and C12E8 DRMs was not statistically significant. Our results suggest that although the acyl chain packing is similar in DRMs prepared with either Triton X-100 or C12E8 detergent, protein content is dissimilar, with flotillin-2 being selectively enriched in Triton X-100 DRMs. © 2008 Springer Science+Business Media, LLC. 227 1 39 48 Bacia, K., Scherfeld, D., Kahya, N., Schwille, P., Fluorescence correlation spectroscopy relates rafts in model and native membranes (2004) Biophys J, 87, pp. 1034-1043 Berger, B.W., Garcia, R.Y., Lenhoff, A.M., Kaler, E.W., Robinson, C.R., Relating surfactant properties to activity and solubilization of the human adenosine A3 receptor (2005) Biophys J, 89, pp. 452-464 Beutler, E., West, C., Blume, K.G., The removal of leukocytes and platelets from whole blood (1976) J Lab Clin Med, 88, pp. 328-333 Bickel, P.E., Scherer, P.E., Schnitzer, J.E., Oh, P., Lisanti, M.P., Lodish, H.F., Flotillin and epidermal surface antigen define a new family of caveolae-associated integral membrane proteins (1997) J Biol Chem, 272, pp. 13793-13802 Brown, D.A., London, E., Functions of lipid rafts in biological membranes (1998) Annu Rev Cell Dev Biol, 14, pp. 111-136 Brown, D.A., Rose, J.K., Sorting of GPI-anchored proteins to glycolipid-enriched membrane subdomains during transport to the apical cell surface (1992) Cell, 68, pp. 533-544 Casey, J.R., Reithmeier, R.A.F., Analysis of the oligomeric state of band 3, the anion transport protein of the human erythrocyte membrane, by size exclusion high performance liquid chromatography (1991) J Biol Chem, 266, pp. 15726-15737 Cassera, M.B., Silber, A.M., Gennaro, A.M., Differential effects of cholesterol on acyl chain order in erythrocyte membranes as a function of depth from the surface. An electron paramagnetic resonance (EPR) spin label study (2002) Biophys Chem, 99, pp. 117-127 Cereda, C.M., De Araujo, D.R., Brunetto, G.B., De Paula, E., Liposomal prilocaine: Preparation, characterization, and in vivo evaluation (2004) J Pharm Sci, 7, pp. 235-240 Ciana, A., Balduini, C., Minetti, G., Detergent-resistant membranes in human erythrocytes and their connection to the membrane-skeleton (2005) J Biosci, 30, pp. 317-328 De Gassart, A., Géminard, C., Février, B., Raposo, G., Vidal, M., Lipid raft-associated protein sorting in exosomes (2003) Blood, 102, pp. 4336-4344 Delaunay, J.L., Breton, M., Godine, J.W., Trugnan, G., Maurice, M., Differential detergent resistance of the apical and basolateral NPPases: Relationship with polarized targeting (2007) J Cell Sci, 120, pp. 1009-1016 De Paula, E., Schreier, S., Use of a novel method for determination of partition coefficients to compare the effect of local anesthetics on membrane structure (1995) Biochim Bhiophys Acta, 1240, pp. 25-33 Dodge, J.T., Mitchell, C., Hanahan, D.J., The preparation and chemical characteristics of hemoglobin-free ghosts of human erythrocytes (1963) Arch Biochem Biophys, 100, pp. 119-130 Glebov, O.O., Bright, N.A., Nichols, B.J., Flotillin-1 defines a clathrin-independent endocytic pathway in mammalian cells (2006) Nat Cell Biol, 8, pp. 46-54 Griffith, O.H., Jost, O.P., Berliner, L.J., Spin labels in biological membranes (1976) Spin Labeling: Theory and Applications, pp. 454-523. , Academic Press New York Grzybek, M., Chorzalska, A., Bok, E., Hryniewicz-Jankowska, A., Czogalla, A., Diakowski, W., Sikorski, A.F., Spectrin-phospholipid interactions. Existence of multiple kinds of binding sites? (2006) Chem Phys Lipids, 141, pp. 133-141 Haldar, K., Mohandas, N., Samuel, B.U., Harrison, T., Hiller, N.L., Akompong, T., Cheresh, P., Protein and lipid trafficking induced in erythrocytes infected by malaria parasites (2002) Cell Microbiol, 4, pp. 383-395 Hubbel, W.L., McConnel, H.M., Molecular motion in spin-labeled phospholipids and membranes (1971) J Am Chem Soc, 93, pp. 314-326 Ilangumaran, S., Arni, S., Van Echten-Decker, G., Borisch, B., Hoessli, D.C., Microdomain-dependent regulation of Lck and Fyn protein-tyrosine kinases in T lymphocyte plasma membranes (1999) Mol Biol Cell, 10, pp. 891-905 Kamata, K., Manno, S., Ozaki, M., Takakuwa, Y., Functional evidence for presence of lipid rafts in erythrocyte membranes: Gsα in rafts is essential for signal transduction (2008) Am J Hematol, 83, pp. 371-375 Laemmli, U.K., Cleavage of structural proteins during the assembly of the head of bacteriophage T4 (1970) Nature (London), 227, pp. 680-685 Langhorst, M.F., Solis, G.P., Hannbeck, S., Plattner, H., Stuermer, C.A., Linking membrane microdomains to the cytoskeleton: Regulation of the lateral mobility of reggie-1/flotillin-2 by interaction with actin (2007) FEBS Lett, 581, pp. 4697-4703 Le Maire, M., Champeil, P., Moller, J.V., Interaction of membrane proteins and lipids with solubilizing detergents (2000) Biochim Biophys Acta, 1508, pp. 86-111 Lichtenberg, D., Goni, F.M., Heerklotz, H., Detergent-resistant membranes should not be identified with membrane rafts (2005) Trends Biochem Sci, 30, pp. 430-436 MacDonald, J.L., Pike, L.J., A simplified method for the preparation of detergent-free lipid rafts (2005) J Lipid Res, 46, pp. 1061-1067 Malheiros, S.V.P., Meirelles, N.C., De Paula, E., Pathways involved in trifluoperazine-, dibucaine- and praziquantel-induced hemolysis (2000) Biophys Chem, 83, pp. 89-100 Matkó, J., Szöllosi, J., Mattson, M.P., Regulatory aspects of membrane microdomain (raft) dynamics in live cells (2005) Membrane Microdomain Signaling. Lipid Rafts in Biology and Medicine, pp. 15-46. , Humana Press Totowa, NJ McIntosh, T.J., McIntosh, T.J., Overview of membrane rafts (2007) Methods in Molecular Biology: Lipid Rafts, pp. 1-7. , Humana Press Totowa, NJ McMullen, T.P.W., Rnah, L., McElhaney, R.N., Differential scanning calorimetric study of the effect of cholesterol on the thermotropic phase behavior of a homologous series of linear saturated phosphatidylcholines (1993) Biochemistry, 32, pp. 516-522 Moffet, S., Brown, D.A., Linder, M.E., Lipid-dependent targeting of G proteins into rafts (2000) J Biol Chem, 275, pp. 2191-2198 Motoyama, K., Arima, H., Toyodome, H., Irie, T., Hirayama, F., Uekama, K., Effect of 2,6-di-O-methyl-alpha-cyclodextrin on hemolysis and morphological change in rabbit's red blood cells (2006) Eur J Pharm Sci, 29, pp. 111-119 Munro, S., Lipid rafts: Elusive or illusive? (2003) Cell, 115, pp. 377-388 Murphy, S.C., Samuel, B.U., Harrison, T., Speicher, K.D., Speicher, D.W., Reid, M.E., Prohaska, R., Haldar, K., Erythrocyte detergent-resistant membrane proteins: Their characterization and selective uptake during malaria infection (2004) Blood, 103, pp. 1920-1928 Murphy, S.C., Fernandez-Pol, S., Chung, P.H., Murthy, S.N.P., Milne, S.B., Salomao, M., Brown, H.A., Haldar, K., Cytoplasmic remodeling of erythrocyte raft lipids infection by the human malaria parasite Plasmodium falciparum (2007) Blood, 110, pp. 2132-2139 Nagao, E., Seydel, K.B., Dvorak, J.A., Detergent-resistant erythrocyte membrane rafts are modified by a Plasmodium falciparum infection (2002) Exp Parasitol, 102, pp. 57-59 Neumann-Giesen, C., Falkenbach, B., Beicht, P., Claasen, S., Lüers, G., Stuermer, C.A., Herzog, V., Tikkanen, R., Membrane and raft association of reggie-1/flotillin-2: Role of myristoylation, palmitoylation and oligomerization and induction of filopodia by overexpression (2004) Biochem J, 378, pp. 509-518 Parkin, E.T., Turner, A.J., Hooper, N.M., Isolation and characterization of two distinct low-density, Triton-insoluble, complexes from porcine lung membranes (1996) Biochem J, 319, pp. 887-896 Pike, L.J., Lipid rafts: Heterogeneity on the high seas (2004) Biochem J, 378, pp. 281-292 Pike, L.J., Rafts defined: A report on the keystone symposium on lipid rafts and cell function (2006) J Lipid Res, 47, pp. 1597-1598 Preté, P.S.C., Gomes, K., Malheiros, S.V.P., Meirelles, N.C., De Paula, E., Solubilization of human erythrocyte membranes by non-ionic surfactants of the polyoxyethylene alkyl ethers series (2002) Biophys Chem, 97, pp. 45-54 Ridyard, M.S., Robbins, S.M., Fibroblast growth factor-2-induced signaling through lipid raft-associated fibroblast growth factor receptor substrate 2 (FRS2) (2003) J Biol Chem, 278, pp. 13803-13809 Rigaud, J.-L., Pitard, B., Levy, D., Reconstituition of membrane proteins into liposomes: Application to energy-transducing membrane proteins (1995) Biochim Biophys Acta, 1231, pp. 223-246 Rivas, M.G., Gennaro, A.M., Detergent resistant domains in erythrocyte membranes survive after cell cholesterol depletion: An EPR spin label study (2003) Chem Phys Lipids, 122, pp. 165-169 Rodi, P.M., Cabeza, M.S., Gennaro, A.M., Detergent solubilization of bovine erythrocytes. Comparison between the insoluble material and the intact membrane (2006) Biophys Chem, 122, pp. 114-122 Rose, H.G., Oklander, M., Improved procedure for the extraction of lipids from human erythrocytes (1965) J Lipid Res, 6, pp. 428-431 Salamon, Z., Devanathan, S., Tollin, G., Plasmon-waveguide resonance spectroscopy studies of lateral segregation in solid-supported proteolipid bilayers (2007) Methods in Molecular Biology: Lipid Rafts, pp. 159-178. , McIntosh TJ (ed) Human Press, Totowa, NJ Salzer, U., Prohaska, R., Stomatin, flotillin-1, and flotillin-2 are major integral proteins of erythrocyte lipid rafts (2001) Blood, 97, pp. 1141-1143 Salzer, U., Hinterdorfer, P., Hunger, U., Borken, C., Prohaska, R., Ca++-dependent vesicle release from erythrocytes involves stomatin-specific lipid rafts, synexin (annexin VII), and sorcin (2002) Blood, 99, pp. 2569-2577 Samuel, B.U., Mohandas, N., Harrison, T., McManus, H., Rosse, W., Reid, M., Haldar, K., The role of cholesterol and glycosylphosphatidylinositol-anchored proteins of erythrocyte rafts in regulating raft protein content and malarial infection (2001) J Biol Chem, 276, pp. 29319-29329 Santos, H.L., Lamas, R.P., Ciancaglini, P., Solubilization of Na,K-ATPase from rabbit kidney outer medulla using only C12E8 (2002) Braz J Med Biol Res, 35, pp. 277-288 Saslowsky, D.E., Lawrence, J., Ren, X., Brown, D.A., Henderson, R.M., Edwards, J.M., Placental alkaline phosphatase is efficiently targeted to rafts in support lipid bilayer (2002) J Biol Chem, 277, pp. 26966-26970 Schreier, S., Polnaszek, C.F., Smith, I.C.P., Spin labels in membranes (1978) Biochim Biophys Acta, 515, pp. 375-436 Schuck, S., Honsho, M., Ekroos, K., Shevchenko, A., Simons, K., Resistance of cell membranes to different detergents (2003) Proc Natl Acad Sci USA, 100, pp. 5795-5800 Seelig, J., Deuterium magnetic resonance: Theory and application to lipid membranes (1977) Q Rev Biophys, 10, pp. 353-418 Simons, K., Ikonen, E., Functional rafts in cell membranes (1997) Nature, 387, pp. 569-572 Simons, K., Vaz, W.L., Model systems, lipid rafts, and cell membranes (2004) Annu Rev Biophys Biomol Struc, 33, pp. 269-295 Sulkowski, W.W., Pentak, D., Nowak, K., Sulkowska, A., The influence of temperature and pH on the structure of liposomes formed from DMPC (2006) J Mol Struct, 792-793, pp. 257-264 Wilkinson, D.K., Turner, E.J., Parkin, E.T., Garner, A.E., Harrison, P.J., Crawford, M., Stewart, G.W., Hooper, N.M., Membrane raft actin deficiency and altered Ca2+-induced vesiculation in stomatin-deficient overhydrated hereditary stomatocytosis (2007) Biochim Biophys Acta, 1778, pp. 125-132 Wong, W., Schlichter, L.C., Differential recruitment of Kv1.4 and Kv4.2 to lipid rafts by PSD-95 (2004) J Biol Chem, 279, pp. 444-452