Skip to main content
Log in

Filipin-sterol complexes at nodes of Ranvier

  • Published:
Journal of Neurocytology

Summary

Using the filipin-sterol technique, regional heterogeneity in the axonal and Schwann cell plasma membranes was investigated at the node of Ranvier and paranodes. Filipin-sterol complexes were abundant at the nodal axolemma but infrequent throughout the paranodal axolemma. The paranodal Schwann cell plasma membrane was rich in complexes which extended over the nodal Schwann cell microvilli. There were no regional differences in filipin labelling of the nodal-paranodal Schwann cell plasma membrane in relation to features such as paranodal cytoplasmic columns or mesaxonal furrows. However, the paranodes of adjacent Schwann cells were sometimes markedly different from each other in the amount of filipin labelling. The extent to which filipin labelling is indicative of cholesterol membrane content is discussed and the findings are related to current concepts of distribution, mobility and interaction of protein and lipid in biomembranes, with particular reference to the nodal axolemma.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Allt, G. &Gajree, T. (1980) Correlative light and electron microscopy of teased single nerve fibres.Trends in Neurosciences 3, 306–9.

    Google Scholar 

  • Allt, G., Blanchard, C. E., MacKenzie, M. L. &Sikri, K. (1985) Distribution of filipin-sterol complexes in the myelinated nerve fibre.Journal of Ultrastructure Research, in press.

  • Almers, W. &Stirling, C. (1984) Distribution of transport proteins over animal cell membranes.Journal of Membrane Biology 77, 169–86.

    PubMed  Google Scholar 

  • Demel, R. A. &De Kruyff, B. (1976) The function of sterols in membranes.Biochemica et Biophysica Acta 457, 109–32.

    Google Scholar 

  • Dragsten, P. R., Handler, J. S. &Blumenthal, R. (1982) Fluorescent membrane probes and the mechanism of maintenance of cellular asymmetry in epithelia.Federation Proceedings 41, 48–53.

    PubMed  Google Scholar 

  • Ellisman, M. H., Wiley, C. A., Lindsey, J. D. &Wurtz, C. C. (1984) Structure and function of the cytoskeleton and endomembrane systems at the node of Ranvier. InThe Node of Ranvier (edited byZagoren, J. C. &Fedoroff, S.), pp. 31–67. New York, London: Academic Press.

    Google Scholar 

  • Feder, N. (1971) Microperoxidase. An ultrastructural tracer of low molecular weight.Journal of Cell Biology 51, 339–43.

    PubMed  Google Scholar 

  • Finean, J. B., Coleman, R. &Michele, R. H. (1984)Membranes and Their Cellular Functions, 3rd edn, pp. 34–47, 178. Oxford: Blackwell.

    Google Scholar 

  • Friend, D. S. &Bearer, E. L. (1981) β-hydroxysterol disribution as determined by freeze-fracture cytochemistry.Histochemical Journal 13, 535–46.

    PubMed  Google Scholar 

  • Ghabriel, M. N. &Allt, G. (1982a) A technique for microinjection of peripheral nerve.Journal of Neurological Sciences 54, 317–23.

    Google Scholar 

  • Ghabriel, M. N. &Allt, G. (1982b) The node of Ranvier. InProgress in Anatomy, Vol. 2 (edited byHarrison, R. J. &Navaratnam, V.), pp. 137–60. Cambridge: Cambridge University Press.

    Google Scholar 

  • Karnovsky, M. J. (1982) Intramembranous cytochemistry: a perspective.Laboratory Investigation 46, 637–9.

    PubMed  Google Scholar 

  • Karnovsky, M. J., Kleinfeld, A. M., Hoover, R. L., Dawidowicz, E. A., McIntyre, D. E., Salzman, E. A. &Klausner, R. D. (1982) Lipid domains in membranes.Annals of the New York Academy of Sciences 401, 61–75.

    PubMed  Google Scholar 

  • Landon, D. N. (1981) Structure of normal peripheral myelinated nerve fibers. InAdvances in Neurology, Vol. 31 (edited byWaxman, S. G. &Ritchie, J. M.), pp. 25–49. New York: Raven Press.

    Google Scholar 

  • MacKenzie, M. L., Ghabriel, M. N. &Allt, G. (1984) Nodes of Ranvier and Schmidt-Lanterman incisures: anin vivo lanthanum tracer study.Journal of Neurocytology 13, 1043–55.

    Google Scholar 

  • McGookey, D. J., Fagerberg, K. &Anderson, R. G. W. (1983) Filipin-cholesterol complexes form in uncoated vesicle membrane derived from coated vesicles during receptor-mediated endocytosis of low density lipoprotein.Journal of Cell Biology 96, 1273–8.

    PubMed  Google Scholar 

  • Miller, R. G. (1984) The use and abuse of filipin to localize cholesterol in membranes.Cell Biology International Reports 8, 519–35.

    PubMed  Google Scholar 

  • Ritchie, J. M. &Chiu, S. Y. (1981) Distribution of sodium and potassium channels in mammalian myelinated nerve. InAdvances in Neurology, Vol. 31 (edited byWaxman, S. G. &Ritchie, J. M.), pp. 329–42. New York: Raven Press.

    Google Scholar 

  • Robinson, J. M. &Karnovsky, M. J. (1980) Evaluation of the polyene antibiotic filipin as a cytochemical probe for membrane cholesterol.Journal of Histochemistry and Cytochemistry 28, 161–8.

    PubMed  Google Scholar 

  • Rogart, R. (1984) Structural and functional relationships of ion conduction in the myelinated and demyelinated axon. InThe Node of Ranvier (edited byZagoren, J. C. &Fedoroff, S.), pp. 109–52. New York, London: Academic Press.

    Google Scholar 

  • Rosenbluth, J. (1981) Freeze-fracture approaches to ionophore localization in normal and myelin-deficient nerves. InAdvances in Neurology, Vol. 31 (edited byWaxman, S. G. &Ritchie, J. M.), pp. 391–418. New York: Raven Press.

    Google Scholar 

  • Rosenbluth, J. (1983) Structure of the node of Ranvier. InStructure and Function in Excitable Cells (edited byChang, D. C., Tasaki, I., Adelman, W. J. &Leuchtag, H. R.), pp. 25–52. New York: Plenum Press.

    Google Scholar 

  • Rosenbluth, J. (1984) Membrane specializations at the nodes of Ranvier and paranodal and juxtaparanodal regions of myelinated central and peripheral nerve fibers. InThe Node of Ranvier (edited byZagoren, J. C. &Fedoroff, S.), pp. 31–67. New York, London: Academic Press.

    Google Scholar 

  • Sandri, C., Van Buren, J. M. &Akert, K. (1977) Membrane morphology of the vertebrate nervous system. A study with freeze-etch technique.Progress in Brain Research 46, 1–384.

    PubMed  Google Scholar 

  • Schneider, H., Hochli, M. &Hackenbrock, C. R. (1982) Relationship between the density distribution of intramembrane particles and electron transfer in the mitochondrial inner membrane as revealed by cholesterol incorporation.Journal of Cell Biology 94, 387–93.

    PubMed  Google Scholar 

  • Steer, C. J., Bisher, M., Blumenthal, R. &Steven, A. C. (1984) Detection of membrane cholesterol by filipin in isolated rat liver coated vesicles is dependent upon removal of the clathrin coat.Journal of Cell Biology 99, 315–19.

    PubMed  Google Scholar 

  • Towfighi, J. &Gonatas, N. (1977) The distribution of peroxidase in the sciatic nerves of normal and hexachlorophene intoxicated developing rats.Journal of Neurocytology 6, 39–17.

    PubMed  Google Scholar 

  • Waxman, S. G. (1978) Variations in axonal morphology and their functional significance. InPhysiology and Pathobiology of Axons (edited byWaxman, S. G.), pp. 169–90. New York: Raven Press.

    Google Scholar 

  • Waxman, S. G. (1981) Plasticity in the ontogeny and pathophysiology of myelinated fibers. InAdvances in Neurology, Vol. 31 (edited byWaxman, S. G. &Ritchie, J. M.), pp. 69–92. New York: Raven Press.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Blanchard, C.E., Mackenzie, M.L., Sikri, K. et al. Filipin-sterol complexes at nodes of Ranvier. J Neurocytol 14, 1053–1062 (1985). https://doi.org/10.1007/BF01224812

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01224812

Keywords

Navigation