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Research Article

The topography of acetylcholinesterase in dimyristoylphosphatidylcholine liposomes

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Pages 301-309 | Received 10 Aug 1988, Accepted 01 Sep 1988, Published online: 27 Sep 2008

References

  • Anglister L., Silman I. Molecular structure of elongated forms of electric eel acetylcholinesterase. Journal of Molecular Biology 1978; 125: 293–311
  • Barber R. F., Shek P. N. Liposomes and tear fluid. I. Release of vesicleentrapped carboxyfluorescein. Biochimica et Biophysica Acta 1986; 879: 157–163
  • Brimijoin S. Molecular forms of acetylcholinesterase in brain, nerve and muscle: Nature, localization and dynamics. Progress Neurobiology 1983; 21: 291–322
  • Buhiler D. R. A simple scintillation counting technique for assaying 14CO2 in a Warburg flask. Analytical Biochemistry 1962; 4: 413–417
  • Cohen R., Barenholz Y. Characterization of the association of Electrophorus electricus acetylcholinesterase with sphingomyelin liposomes. Biochimica et Biophysica Acta 1984; 778: 94–104
  • Dittmer J. C., Wells M. A. Quantitative and qualitive analysis of lipids and lipid components. Methods in Enzymology, J. M. Lowenstein. Academic Press, New York 1969; Vol. 14: 482–530
  • Ellman G. L., Courtney K. D., Andres V., Featherstone R. M. A new and rapid colorimetric determination of acetylcholinesterase activity. Biochemical Pharmacology 1961; 7: 88–95
  • Hemminga M. A. Interpretation of ESR and saturation transfer ESR spectra of spin labelled lipids and membranes. Chemistry and Physics of Lipids 1983; 32: 323–383
  • Kaufmann K., Silman I. Interaction of electric eel acetylcholinesterase with natural and synthetic lipids. Neurochemistry International 1980; 2: 205–207
  • Kim B. H., Rosenberry T. L. A small hydrophobic domain that localizes human erythrocyte acetylcholinesterase in liposomal membranes is cleaved by papain digestion. Biochemistry (U.S.A.) 1985; 24: 3586–3592
  • Laemmli U. K. Cleavage of structural proteins during the assembly of the head of Bacteriophage T4. Nature 1970; 227: 680–685
  • Markwell M. A. K., Haas S. M., Bieher L. L., Tolbert N. E. A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samples. Analytical Biochemistry 1978; 87: 206–210
  • Massoulie J., Bon S. The molecular forms of cholinesterase and acetylcholinesterase in vertebrates. Annual Review of Neuroscience 1982; 5: 57–106
  • Mayer L. D., Bally M. B., Hope M. J., Cullis P. R. Techniques for encapsulating bioactive agents into liposomes. Chemistry and Physics of Lipids 1986; 40: 333–345
  • Seelig J., Macdonald P. M., Scherer P. G. Phospholipid head groups as sensors of electric charge in membranes. Biochemistry (U.S.A.) 1987; 26: 7535–7541
  • Shek P. N., Barber R. F. Liposomes are effective carriers for the ocular delivery of prophylactics. Biochimica et Biophysica Acta 1987; 902: 229–236
  • Silvius J. R. Thermotropic phase transitions of pure lipids in model membranes and their modification by membrane proteins. Lipid-Protein Interactions, P. Jost, O. H. Griffith. John Wiley, New York 1982; Vol. 2: 239–281
  • Tiller G. E., Struve W. G. Effect of membrane fluidity upon binding of Electrophorus acetylcholinesterase to lipid vesicles. Biochimica et Biophysica Acta 1985; 812: 543–552
  • Vaughan D. J., Breckenridge W. C., Stanacev N. Z. Reconstitution of lipoproteins. I. Lipid-protein interaction of high density apoproteins, purified apoA-I and apoA-II with dimyristoyl-lecithin and dimyristoyl-lecithin : cholesterol vesicles studied by isomeric spin-labelled lecithins. Canadian Journal of Biochemistry 1980a; 58: 581–591
  • Vaughan D. J., Breckenridge W. C., Stanacev N. Z. Reconstitution of lipoproteins. II. Lipid-protein interaction between dimyristoyl-lecithin and dimyristoyl-lecithin : cholesterol vesicles and purified apolipoprotein C-I and C-III2 studied by isomeric spin-labelled lecithins. Canadian Journal of Biochemistry 1980b; 58: 592–598
  • Watkins M. S., Hitt A. S., Bulger J. E. The binding of 18S acetylcholinesterase to sphingomyelin and the role of the collagen-like tail. Biochemical and Biophysical Research Communications 1977; 79: 640–647
  • Yung B., Shek P. N., Stanacey N. Z. Topological distribution of bovine serum albumin in multilamellar and unilamellar liposomes. Chemistry and Physics of Lipids 1985; 37: 283–295

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