GAP‐43 as a plasticity protein in neuronal form and repair
- 1 July 1992
- journal article
- review article
- Published by Wiley in Journal of Neurobiology
- Vol. 23 (5), 507-520
- https://doi.org/10.1002/neu.480230506
Abstract
Neurons exhibit a remarkable plasticity of form, both during neural development and during the subsequent remodelling of synaptic connectivity. Here we review work on GAP‐43 and G0, and focus upon the thesis that their interaction may endow neurons with such plasticity. We also present new data on the role of G proteins in neurite growth, and on the interaction of GAP‐43 and actin. GAP‐43 is a protein induced during periods of axonal extension and highly enriched on the inner surface of the growth cone membrane. Its membrane localization is primarily due to a short amino terminal sequence which is subject to palmitoylation. Binding to actin filaments may also assist in restricting the protein to specific cellular domains. Consistent with its role as a „plasticity protein,”︁ there is evidence that GAP‐43 can directly alter cell shape and neurite extension, and several theses have been advanced for how it might do so. Two other prominent components of the growth cone membrane are the α and β subunits of G0. GAP‐43 regulates their guanine nucleotide exchange, which is an unusual role for an intracellular protein. We speculate that GAP‐43 may adjust the „set point”︁ of responsiveness for G0 stimulation by receptors, thereby altering the neuronal propensity to growth, without actually causing growth. To begin to address how G protein activity affects axon growth, we have developed a means to introduce guanine nucleotide analogs into sympathetic neurons. Stimulation of G proteins with GTP‐γ‐S retards axon growth, whereas GDP‐β‐S enhances it. This is compatible with G protein registration of inhibitory signals. © 1992 John Wiley & Sons, Inc.Keywords
This publication has 87 references indexed in Scilit:
- Expression of the growth-associated protein GAP-43 in adult rat retinal ganglion cells following axon injuryNeuron, 1991
- The p38 and p34 polypeptides of growth cone particle membranes are the α- and β-subunits of G proteinsDevelopmental Brain Research, 1990
- Neuromodulin (GAP43): a neuronal protein kinase C substrate is also present in 0-2A glial cell lineage. Characterization of neuromodulin in secondary cultures of oligodendrocytes and comparison with the neuronal antigen.The Journal of cell biology, 1990
- The product of rab2, a small GTP binding protein, increases neuronal adhesion, and neurite growth in vitroNeuron, 1990
- Chicken Growth‐Associated Protein GAP‐43 Is Tightly Bound to the Actin‐Rich Neuronal Membrane SkeletonJournal of Neurochemistry, 1990
- GAP-43 gene expression during development: persistence in a distinctive set of neurons in the mature central nervous systemDevelopmental Brain Research, 1989
- ras p21 protein promotes survival and fiber outgrowth of cultured embryonic neuronsNeuron, 1989
- Nerve growth cones isolated from fetal rat brain: Subcellular fractionation and characterizationCell, 1983
- Axonally transported proteins associated with axon growth in rabbit central and peripheral nervous systemsThe Journal of cell biology, 1981
- Changes in axonally transported proteins during axon regeneration in toad retinal ganglion cells.The Journal of cell biology, 1981