Abstract
Hippocampal neurons growing in culture initially extend several, short minor processes that have the potential to become either axons or dendrites. The first expression of polarity occurs when one of these minor processes begins to elongate rapidly, becoming the axon. Before axonal outgrowth, the growth-associated protein GAP-43 is distributed equally among the growth cones of the minor processes; it is preferentially concentrated in the axonal growth cone once polarity has been established (Goslin, K., D. Schreyer, J. Skene, and G. Banker. 1990. J. Neurosci. 10:588-602). To determine when the selective segregation of GAP-43 begins, we followed individual cells by video microscopy, fixed them as soon as the axon could be distinguished, and localized GAP-43 by immunofluorescence microscopy. Individual minor processes acquired axonal growth characteristics within a period of 30-60 min, and GAP-43 became selectively concentrated to the growth cones of these processes with an equally rapid time course. We also examined changes in the distribution of GAP-43 after transection of the axon. After an axonal transection that is distant from the soma, neuronal polarity is maintained, and the original axon begins to regrow almost immediately. In such cases, GAP-43 became selectively concentrated in the new axonal growth cone within 12-30 min. In contrast, when the axon is transected close to the soma, polarity is lost; the original axon rarely regrows, and there is a significant delay before a new axon emerges. Under these circumstances, GAP-43 accumulated in the new growth cone much more slowly, suggesting that its ongoing selective routing to the axon had been disrupted by the transection. These results demonstrate that the selective segregation of GAP-43 to the growth cone of a single process is closely correlated with the acquisition of axonal growth characteristics and, hence, with the expression of polarity.
MeSH Terms
Animals
Axons/ultrastructure
Cells, Cultured
Cycloheximide/pharmacology
Dendrites/ultrastructure
Fluorescent Antibody Technique
GAP-43 Protein
Growth Substances/physiology
Hippocampus/physiology
Kinetics
Membrane Glycoproteins/analysis,biosynthesis,physiology
Nerve Tissue Proteins/analysis,biosynthesis,physiology
Neurons/cytology,drug effects,physiology
Phosphoproteins/physiology
Rats
Video Recording
Chemicals
GAP-43 Protein
Growth Substances
Membrane Glycoproteins
Nerve Tissue Proteins
Phosphoproteins
Cycloheximide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Goslin K
Department of Neuroscience, University of Virginia School of Medicine, Charlottesville 22908.
Banker G
References (25)
25 references, click to expand
-
Colchicine inhibition of nerve fiber formation in vitro.
J Cell Biol. 1972 Apr;53(1):164-76
PMID: 4552141
-
Selective conservation of GAP-43 structure in vertebrate evolution.
Neuron. 1989 Sep;3(3):299-310
PMID: 2641999
-
Rat hippocampal neurons in dispersed cell culture.
Brain Res. 1977 May 13;126(3):397-42
PMID: 861729
-
Growth of a rat neuroblastoma cell line in serum-free supplemented medium.
Proc Natl Acad Sci U S A. 1979 Jan;76(1):514-7
PMID: 284369
-
Trophic interactions between astroglial cells and hippocampal neurons in culture.
Science. 1980 Aug 15;209(4458):809-10
PMID: 7403847
-
Changes in axonally transported proteins during axon regeneration in toad retinal ganglion cells.
J Cell Biol. 1981 Apr;89(1):86-95
PMID: 6164682
-
A simple method of reducing the fading of immunofluorescence during microscopy.
J Immunol Methods. 1981;43(3):349-50
PMID: 7019347
-
An electron microscopic study of the development of axons and dendrites by hippocampal neurons in culture. I. Cells which develop without intercellular contacts.
J Neurosci. 1984 Aug;4(8):1944-53
PMID: 6470762
-
Pyruvate participation in the low molecular weight trophic activity for central nervous system neurons in glia-conditioned media.
J Neurosci. 1985 Jan;5(1):23-8
PMID: 3917493
-
Growth-associated protein, GAP-43, a polypeptide that is induced when neurons extend axons, is a component of growth cones and corresponds to pp46, a major polypeptide of a subcellular fraction enriched in growth cones.
Proc Natl Acad Sci U S A. 1986 May;83(10):3537-41
PMID: 3517863
-
A protein induced during nerve growth (GAP-43) is a major component of growth-cone membranes.
Science. 1986 Aug 15;233(4765):783-6
PMID: 3738509
-
Cell surface polarity in epithelia.
Annu Rev Cell Biol. 1985;1:243-88
PMID: 3939606
-
Experimentally induced alteration in the polarity of developing neurons.
Nature. 1987 Nov 19-25;330(6145):254-6
PMID: 3313064
-
The establishment of polarity by hippocampal neurons in culture.
J Neurosci. 1988 Apr;8(4):1454-68
PMID: 3282038
-
Development of neuronal polarity: GAP-43 distinguishes axonal from dendritic growth cones.
Nature. 1988 Dec 15;336(6200):672-4
PMID: 3059197
-
Posttranslational membrane attachment and dynamic fatty acylation of a neuronal growth cone protein, GAP-43.
J Cell Biol. 1989 Feb;108(2):613-24
PMID: 2918027
-
Experimental observations on the development of polarity by hippocampal neurons in culture.
J Cell Biol. 1989 Apr;108(4):1507-16
PMID: 2925793
-
Axonal growth-associated proteins.
Annu Rev Neurosci. 1989;12:127-56
PMID: 2648946
-
Distribution and phosphorylation of the growth-associated protein GAP-43 in regenerating sympathetic neurons in culture.
J Neurosci. 1988 Jul;8(7):2571-81
PMID: 3249243
-
Growth at the growth cone.
Trends Neurosci. 1989 Jul;12(7):238-40
PMID: 2475932
-
A membrane-targeting signal in the amino terminus of the neuronal protein GAP-43.
Nature. 1989 Sep 28;341(6240):345-8
PMID: 2797153
-
Inhibition of noradrenaline release by antibodies to B-50 (GAP-43).
Nature. 1989 Nov 2;342(6245):74-6
PMID: 2812003
-
Changes in microtubule polarity orientation during the development of hippocampal neurons in culture.
J Cell Biol. 1989 Dec;109(6 Pt 1):3085-94
PMID: 2592416
-
Changes in the distribution of GAP-43 during the development of neuronal polarity.
J Neurosci. 1990 Feb;10(2):588-602
PMID: 2137532
-
Growth and cultivation of dissociated neurons and glial cells from embryonic chick, rat and human brain in flask cultures.
Neurobiology. 1972;2(3):97-105
PMID: 4572654