29
Views
47
CrossRef citations to date
0
Altmetric
Original Article

Fusion of Semliki Forest virus with cholesterol-containing liposomes at low pH: a specific requirement for sphingolipids

, , , , , & show all
Pages 143-149 | Published online: 09 Jul 2009

References

  • Allan D., Quinn P. Membrane phospholipid asymmetry in Semliki Forest virus grown in BHK cells. Biochimica et Biophysica Acta 1989; 987: 199–204
  • Bentz J. Viral Fusion Mechanisms. CRC Press, Boca Raton, FL 1993; 1–529
  • Bligh E. G., Dyer W. J. A rapid method of total lipid extraction and purification. Canadian Journal of Biochememistry and Biophysiology 1959; 37: 911–913
  • Bron R., Wahlberg J. M., Garoff H., Wilschut J. Membrane fusion of Semliki Forest virus in a model system: correlation between fusion kinetics and structural changes in the envelope glycoprotein. EMBO Journal 1993; 12: 693–701
  • Böttcher C. J. F., Van Gent C. M., Fries C. A rapid and sensitive sub-micro phosphorus determination. Analytics Chimica Acta 1961; 24: 203–204
  • Chernomordik L. V., Melikyan G. B., Chizmadzhev Y. A. Biomembrane fusion: a new concept derived from model studies using two interacting planar lipid bilayers. Biochimica et Biophysica Acta 1987; 906: 309–352
  • Clejan S., Bittman R. Decreases in rates of lipid exchange between Mycoplasma gallisepticum cells and unilamellar vesicles by incorporation of sphingomyelin. Journal of Biological Chemistry 1984; 259: 10823–10826
  • Cullis P. R., Tilcock C. P. S., Hope M. J. Lipid polymorphism. Membrane Fusion, J. Wilschut, D. Hoekstra. Marcel Dekker, Inc., New York, NY 1991; 35–64
  • Devaux P. F. Static and dynamic lipid asymmetry in cell membranes. Biochemistry 1991; 30: 1163–1173
  • Galla H. J., Hartmann W. Excimer-forming lipids in membrane research. Chemistry and Physics of Lipids. 1980; 27: 199–219
  • Garoff H., Frischauf A., Simons K., Lehrach H., Delius H. Nucleotide sequence of cDNA coding for Semliki Forest virus membrane glycoproteins. Nature 1980; 288: 236–241
  • Grönberg L, Slotte J. P. Cholesterol oxidase catalyzed oxidation of cholesteroi in- mixed lipid monolayers: effects of surface pressure and phospholipid composition on catalytic activity. Biochemistry 1990; 29: 3173–3178
  • Grönberg L., Ruan Z. S., Bittman R., Slotte J. P. Interaction of cholesterol with synthetic sphingomyelin derivatives in mixed monolayers. Biochemistry 1991; 30: 10746–10754
  • Helenius A., Kartenbeck J., Simons K., Fries E. On the entry of Semliki Forest virus into BHK-21 cells. J. Cell Biol. 1980; 84: 404–420
  • Justman J., Klimjack M. R., Kielian M. Role of spike protein conformational changes in fusion of Semliki Forest virus. J. Virol. 1993; 67: 7597–7607
  • Kan C., Ruan Z. S., Bittman R. Rates of spontaneous exchange of synthetic radiolabeled sterols between lipid vesicles. Biochemistry 1991; 30: 7759–7766
  • Kielian M., Helenius A. Role of cholesterol in fusion of Semliki Forest virus with membranes. J. Virol. 1984; 52: 281–283
  • Kielian M., Helenius A. pH-Induced alterations in the fusogenic spike protein of Semliki Forest virus. J. Cell Biol. 1985; 101: 2284–2291
  • Lund-Katz S., Laboda H. M., McLean L. R., Phillips M. C. Influence of molecular packing and phospholipid type on rates of cholesterol exchange. Biochemistry 1988; 27: 3416–3423
  • Marquardt M. T., Phalen T., Kielian M. Cholesterol is required in the exit pathway of Semliki Forest virus. Journal of Cell Biology 1993; 123: 57–65
  • Marsh M., Helenius A. Adsorptive endocytosis of Semliki Forest virus. Journal of Molecular Biology 1980; 142: 439–454
  • Marsh M., Wellsteed J., Kern H., Harms E., Helenius A. Monensin inhibits Semliki Forest virus penetration into cultured cells. Proceedings of the National Academy of Sciences, USA 1982; 79: 5297–5301
  • Marsh M., Bolzau E., Helenius A. Penetration of Semliki Forest virus from acidic prelysosomal vacuoles. Cell 1983; 32: 931–940
  • Mc Intosh T. J., Simon S. A., Needham D., Huang C. Structure and cohesive properties of sphingomyelin/cholesterol bilayers. Biochemistry 1992; 31: 2012–2020
  • Needham D., Nunn R. S. Elastic deformation and failurer of lipid bilayer membranes containing cholesterol. Biophysical Journal 1990; 58: 997–1009
  • Nieva J. L., Bron R., Corver J., Wilschut J. Membrane fusion of Semliki Forest virus requires sphingolipids in the target membrane. EMBO J. 1994; 13: 2797–2804
  • Omar A., Koblet H. Semliki Forest virus particles containing only the E1 envelope glycoprotein are infectious and can induce cell-cell fusion. Virology 1988; 166: 17–23
  • Phalen T., Kielian M. Cholesterol is required for infection by Semliki Forest virus. J. Cell Biol. 1991; 112: 615–623
  • Siegel D. P. Energies of intermediates in membrane fusion: comparison of stalk and inverted micellar intermediate mechanisms. Viral Fusion Mechanisms, J. Bentz. CRC Press, Boca Raton, FL 1993a; 475–512
  • Siegel D. P. Energetics of intermediates in membrane fusion: comparison of stalk and inverted micellar intermediate mechanisms. Biophysical Journal 1993b; 65: 2124–2140
  • Slotte J. P. Enzyme-catalyzed oxidation of cholesterol in mixed phospholipid monolayers reveals the stoichiometry at which free cholesterol clusters disappear. Biochemistry 1992; 31: 5472–5477
  • Slotte J. P., Östman A., Kumar E. R., Bittman R. Cholesterol interacts with lactosyl and maltosyl cerrebrosides but not with glucosyl or galactosyl cerebrosides in mixed monolayers. Biochemistry 1993; 32: 7886–7892
  • Stegmann T., Schoen P., Bron R., Wey J., Bartoldus I., Ortiz A., Nieva J. L., Wilschut J. Evaluation of viral membrane fusion assays. Comparison of the octadecylrhodamine dequenching assay with the pyrene excimer assay. Biochemistry 1993; 32: 11330–11337
  • Van Blitterswijk W. J., Van der Meer B. W., Hilkmann H. Quantative contributions of cholesterol and the individual classes of phospholipids and their degree of fatty acyl (un)saturation to emembrane fluidity measured by fluorescence polarization. Biochemistry 1987; 26: 1746–1756
  • Wahlberg J. M., Garoff H. Membrane fusion of Semliki Forest virus involves homotrimers of the fusion protein. J. Cell. Biol. 1992; 116: 339–348
  • Wahlberg J. M., Bron R., Wilschut J., Garott H. Membrane fusion of Semliki Forest virus involves homotrimers of the fusion protein. J. Virol. 1992; 66: 7309–7318
  • White J. M. Membrane fusion. Science 1992; 258: 917–924
  • White J., Helenius A. pH-Dependent fusion between the Semliki Forest virus membrane and liposomes. Proceedings of National Academy of Sciences USA 1980; 77: 3273–3277
  • White J., Kartenbeck J., Helenius A. Fusion of Semliki Forest virus with the plasma membrane can be inducec by low pH. Journal of Cell Biology 1980; 87: 264–272
  • White J. M., Kartenbeck J., Helenius A. Membrane fusion activity of influenza virus. EMBO Journal 1982; 1: 217–222
  • Wilschut J. Membrane fusion in lipid vesicle systems: an overview. Membrane Fusion, J. Wilschut, D. Hoekstra. Marcel Dekker, Inc., New York, NY 1991; 89–126
  • Wilschut J., Bron R. The influenza virus hemagglutinin: membrane fusion activity in intact virions and rreconstituted virosomes. Viral Fusion Mechanisms, J. Bentz. CRC Press, Boca Raton, FL 1993; 133–161

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.