Connexins, Gap Junctions and Cell‐Cell Signalling in the Nervous System
- 1 January 1997
- journal article
- review article
- Published by Wiley in European Journal of Neuroscience
- Vol. 9 (1) , 1-6
- https://doi.org/10.1111/j.1460-9568.1997.tb01346.x
Abstract
Connexins form a multigene family of polytopic membrane proteins that, in vertebrates, are the constitutive subunits of intercellular channels and provide the structural basis for electrical coupling. The appearance of electrical coupling in the nervous system is developmentally regulated and restricted to distinct cell types. Electrical coupling between neurons persists after the establishment of chemical transmission, thus suggesting that this form of cell‐cell signalling may be functionally interrelated with, rather than alternative to chemical transmission. Furthermore, evidence for the possible role of gap junctions in human neurological diseases is also mounting, following the discovery that the X‐linked form of Charcot‐Marie‐Tooth syndrome, a demyelinating neuropathy of the peripheral nervous system, is associated with mutations in a connexin gene. These findings raise new questions on the significance of connexin diversity and on their functional role in the nervous system.Keywords
This publication has 24 references indexed in Scilit:
- Control of gap-junctional communication in astrocytic networksTrends in Neurosciences, 1996
- Connections with Connexins: the Molecular Basis of Direct Intercellular SignalingEuropean Journal of Biochemistry, 1996
- Chain Migration of Neuronal PrecursorsScience, 1996
- The Gap Junction Communication ChannelCell, 1996
- Human epileptic astrocytes exhibit increased gap junction couplingGlia, 1995
- Differential properties of two gap junctional pathways made by AII amacrine cellsNature, 1995
- Connexin Mutations in X-Linked Charcot-Marie-Tooth DiseaseScience, 1993
- Gap junctions in the brain: where, what type, how many and why?Trends in Neurosciences, 1993
- Developmental mechanisms that generate precise patterns of neuronal connectivityCell, 1993
- Synapse formation between dissociated nerve and muscle cells in low density cell culturesDevelopmental Biology, 1972