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Gap junctions between the supporting cells in some acoustico-vestibular receptors

  • Published:
Journal of Neurocytology

Summary

Extensive gap junctions are found between the supporting cells in acoustico-vestibular receptors (saccular macula of the goldfish; ampullar crista, utricular macula and organ of Corti of the guinea pig). The fine structural details of these gap junctions were examined using lanthanum hydroxide staining and freeze-fracture replicas, as well as conventional thin sections. It was found in the lanthanum treated saccular macula of the goldfish that the gap junction globules consist of five or six subunits surrounding a central 2 nm hole. Similar subunits of the gap junction globule are also found in freeze-fracture replicas of the saccular macula of the goldfish and the ampullar crista of the guinea pig. Possible functions of the extensive gap junctions between supporting cells of these receptors are discussed.

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References

  • Albertini, D. F., Fawcett, D. W. AndOlds, P. J. (1975) Morphological variations in gap junctions of ovarian granulosa cells.Tissue and Cell 7, 389–405.

    Google Scholar 

  • Baerwald, R. J. (1975) Inverted gap and other cell junctions in cockroach hemocyte capsules: A thin section and freeze-fracture study.Tissue and Cell 7, 575–85.

    Google Scholar 

  • Bennett, M.V. L. (1973) Function of electrotonic junctions in embryonic and adult tissues.Federation Proceedings 32, 65–75.

    Google Scholar 

  • Bennett, M. V. L., Dunham, P. B. (1970) Sucrose permeability of junctional membrane at an electrotonic synapse.Biophysical Journal 10, 117a.

    Google Scholar 

  • Bennett, M. V. L., Dunham, P. B. AndPappas, G. D. (1967) Ion fluxes through a ‘tight junction’.Journal of General Physiology 50, 1094.

    Google Scholar 

  • Branton, D., Bullivant, S., Gilula, N. B., Karnovsky, M. J., Moor, H., Mühlethaler, K., Northcote, D. H., Packer, L., Satir, B., Satir, P., Speth, V., Staehelin, L. A., Steere, R. L. AndWeinstein, R. S. (1975) Freeze-etching nomenclature.Science 190, 54–6.

    Google Scholar 

  • Friend, D. S. andGilula, N. B. (1972) Variations in tight and gap junctions in mammalian tissue.Journal of Cell Biology 53, 758–76.

    Google Scholar 

  • Furshpan, E. J. andPotter, D. D. (1968) Low resistance junctions between cells in embryos and tissue culture. In:Current Topics in Development of Biology, (edited byMoscona, A. A. andMonroy, A.), Vol 3 pp. 95–127, New York: Academic Press.

    Google Scholar 

  • Gilula, N. B., Reeves, O. R. andSteinbach, A. (1972) Metabolic coupling, ionic coupling and cell contacts.Nature 235, 262–5.

    Google Scholar 

  • Hama, K. (1969) A study on the fine structure of the saccular macula of the goldfish.Zeitshrift für Zellforschung und mikroskopische Anatomie 94, 155–71.

    Google Scholar 

  • Hama, K. andSaito, K. (1975) Gap junctions found between the supporting cells in the saccular macula of the goldfish.Proceedings Tenth International Congress of Anatomists, Tokyo, (edited byYamada, E.) 497 Science Council of Japan.

  • Harris, G. G., Frischkopf, L. S. andFlock, Å (1970) Receptor potentials from hair cells of the lateral line.Science 167, 76–9.

    Google Scholar 

  • Kuffler, S. W. andPotter, D. D. (1964) Glia in the leech central nervous system; physiological properties and neuron-glia relationship.Journal of Neurophysiology 27, 290–320.

    Google Scholar 

  • McNutt, N. S. andWeinstein, R. S. (1970) The ultrastructure of the nexus. A correlated thin section and freeze cleave study.Journal of Cell Biology 47, 666–88.

    Google Scholar 

  • McNutt, N. S. andWeinstein, R. S. (1973) Membrane ultrastructure at mammalian intercellular junctions.Progress in Biophysics and Molecular Biology 26, 45–101.

    Google Scholar 

  • Pappas, G. D. andBennett, M. V. L. (1966) Specialized junctions involved in electrical transmission between neurons.Annals of the New York Academy of Sciences 137, 495–508.

    Google Scholar 

  • Payton, B. W., Bennett, M. V. L. andPappas, G. D. (1969) Permeability and structure of junctional membranes at an electrotonic synapse.Science 166, 1641–3.

    Google Scholar 

  • Peracchia, C. (1973) Low resistance junctions in crayfish. 2. Structural details and further evidence for intercellular channels by freeze-fracture and negative staining.Journal of Cell Biology 57, 66–76.

    Google Scholar 

  • Politoff, A., Pappas, G. D. andBennett, M. V. L. (1972) Cobalt: a tracer for light and electron microscopy that can cross an electrotonic synapse.Journal of Cell Biology 55, 204a.

    Google Scholar 

  • Potter, D. D., Furshpan, E. J. andLennox, E. S. (1966) Connections between cells of the developing squid as revealed by electrophysiological methods.Proceedings of the National Academy of Sciences (U.S.A.)55, 328–35.

    Google Scholar 

  • Reale, E., Luciano, L., Francke, K., Pannese, E., Wermbter, G. andIurato, S. (1975) Intercellular junctions in the vascular stria and spiral ligament.Journal of Ultrastructure Research 53, 284–97.

    Google Scholar 

  • Sheridan, J. D. (1971) Dye movement and low resistance junctions between reaggregated embryonic cells.Developmental Biology 26, 627–36.

    Google Scholar 

  • Staehelin, L. A. (1974) Structure and function of intercellular junctions.International Review of Cytology 39, 191–283.

    Google Scholar 

  • Wersäll, J., Flock, A. andLundquist, P. G. (1965) Structural basis for directional sensitivity in cochlear and vestibular sensory receptors.Cold Spring Harbor Symposium on Quantitative Biology 30, 115–45.

    Google Scholar 

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Hama, K., Saito, K. Gap junctions between the supporting cells in some acoustico-vestibular receptors. J Neurocytol 6, 1–12 (1977). https://doi.org/10.1007/BF01175410

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  • DOI: https://doi.org/10.1007/BF01175410

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