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PMID: 3930511 Published · ppublish English Journal Article

Polarized compartmentalization of organelles in growth cones from developing optic tectum.

The Journal of cell biology ·Vol. 101 ·No. 4 ·1985-10-00 ·Pages 1473-80

Cheng TP, Reese TS

Abstract

We have used computer-assisted reconstructions of continuous serial sections to study the cytoplasmic organization of growth cones in vivo. Optic tecta from 6.25-6.5-d-old chicken embryos were quick-frozen and then freeze-substituted in acetone-osmium tetroxide or, for comparison, prepared by conventional fixation. Images of eight freeze-substituted and two conventionally fixed growth cones were reconstructed from aligned serial micrographs. After freeze-substitution, numerous lumenless membrane-bound sacs arrayed in multilamellar stacks appear to replace the abundant smooth endoplasmic reticulum found after chemical fixation. Microtubule fascicles progressively diverge from their typical fascicular organization in the initial segment of the growth cone and are absent in the varicosity and the more distal segment. Mitochondria, in contrast, are concentrated in the proximal segment of the varicosity; multilamellar stacks and endosome-like vacuoles are in the distal segment; and coated pits and vesicles are concentrated near the terminal filopodium, which is the most distal and organelle-poor domain of the growth cone. These observations suggest that dilation and fusion of the lumenless, membrane-bound sacs that occurs during chemical fixation give rise to the network of smooth endoplasmic reticulum. The three-dimensional reconstructions show that the cytoplasmic components of growth cones, including the membrane-bound sacs and multilamellar stacks revealed by freeze substitution, are polarized along the axis of these growth cones, which suggests that they have a role in recycling of membrane during elongation of the growth cone.

MeSH Terms
Animals Cell Compartmentation Chick Embryo Coated Pits, Cell-Membrane/ultrastructure Computers Fixatives Intracellular Membranes/ultrastructure Microscopy, Electron Microtubules/ultrastructure Models, Anatomic Neurons/ultrastructure Organoids/ultrastructure Specimen Handling Superior Colliculi/embryology,ultrastructure Vacuoles/ultrastructure
Chemicals
Fixatives
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Cheng T P
Reese T S
References (40)
40 references, click to expand
  1. Novel organization of microtubules in cultured central nervous system neurons: formation of hairpin loops at ends of maturing neurites.
    J Neurosci. 1984 Dec;4(12):3002-13 PMID: 6502218
  2. Compartmentalization of clathrin in synaptic terminals.
    Brain Res. 1982 May 6;239(1):201-12 PMID: 7093676
  3. The specificity of retinotectal connections studied by retinal grafts onto the optic tectum in chick embryos.
    Dev Biol. 1967 Dec;16(6):513-31 PMID: 5584561
  4. Immunocytochemical localization of coated vesicle protein in rodent nervous system.
    J Cell Biol. 1980 Aug;86(2):624-33 PMID: 6995469
  5. Freeze-fracturing of nerve growth cones and young fibers. A study of developing plasma membrane.
    J Cell Biol. 1974 Oct;63(1):180-96 PMID: 4609396
  6. New structural features of freeze-substituted neuritic growth cones.
    Neuroscience. 1981;6(2):247-54 PMID: 7219716
  7. Morphology and position of growth cones in the developing Xenopus spinal cord.
    Brain Res. 1982 Jun;256(2):181-93 PMID: 7104753
  8. Identification of gelsolin, a Ca2+-dependent regulatory protein of actin gel-sol transformation, and its intracellular distribution in a variety of cells and tissues.
    J Cell Biol. 1981 Dec;91(3 Pt 1):901-6 PMID: 6276414
  9. Pathway selection by chick lumbosacral motoneurons during normal development.
    Proc R Soc Lond B Biol Sci. 1981 Dec 9;214(1194):1-18 PMID: 6121327
  10. Control of cytoplasmic actin gel-sol transformation by gelsolin, a calcium-dependent regulatory protein.
    Nature. 1979 Oct 18;281(5732):583-6 PMID: 492320
  11. Investigations on the development and topographic order of retinotectal axons: anterograde and retrograde staining of axons and perikarya with rhodamine in vivo.
    J Comp Neurol. 1983 Oct 1;219(4):420-30 PMID: 6643714
  12. Evidence for recycling of synaptic vesicle membrane during transmitter release at the frog neuromuscular junction.
    J Cell Biol. 1973 May;57(2):315-44 PMID: 4348786
  13. Synaptic vesicle exocytosis captured by quick freezing and correlated with quantal transmitter release.
    J Cell Biol. 1979 May;81(2):275-300 PMID: 38256
  14. Ultrastructure and function of growth cones and axons of cultured nerve cells.
    J Cell Biol. 1971 Jun;49(3):614-35 PMID: 4326456
  15. Pathfinding by neuronal growth cones in grasshopper embryos. I. Divergent choices made by the growth cones of sibling neurons.
    J Neurosci. 1983 Jan;3(1):20-30 PMID: 6822856
  16. Components of the plasma membrane of growing axons. I. Size and distribution of intramembrane particles.
    J Cell Biol. 1984 Apr;98(4):1422-33 PMID: 6609162
  17. Fine structure of nerve fibers and growth cones of isolated sympathetic neurons in culture.
    J Cell Biol. 1973 Mar;56(3):713-35 PMID: 4347207
  18. Microfilaments in cellular and developmental processes.
    Science. 1971 Jan 15;171(3967):135-43 PMID: 5538822
  19. Changes in intracellular organization of tubulin and actin in N-18 neuroblastoma cells during the process of axon extension induced by serum deprivation.
    Brain Res. 1978 Oct 27;155(2):229-37 PMID: 356932
  20. Distribution of tubulin and actin in neurites and growth cones of differentiating nerve cells.
    Cell Motil. 1981;1(2):167-78 PMID: 6756641
  21. The fine structure of the axons and growth cones of the human fetal cerebral cortex.
    Brain Res. 1976 Sep 24;114(3):379-9i PMID: 953762
  22. Development of the retinotectal projection in the chicken.
    Adv Anat Embryol Cell Biol. 1980;63:I-VIII, 1-90 PMID: 7457227
  23. Cytoplasmic structure in rapid-frozen axons.
    J Cell Biol. 1982 Sep;94(3):667-9 PMID: 6182148
  24. The fine structure of the axon and growth cone of the dorsal root neuroblast of the rabbit embryo.
    J Cell Biol. 1970 Jan;44(1):62-79 PMID: 5409464
  25. Pathfinding by peripheral pioneer neurons in grasshoppers.
    Science. 1982 Dec 10;218(4577):1082-8 PMID: 17752851
  26. Growth cone formation in cultures of sensory neurons.
    Proc Natl Acad Sci U S A. 1978 Oct;75(10):5226-9 PMID: 283427
  27. Growth cones in differentiated neuroblastoma: a time-lapse cinematographic and electron microscopic study.
    J Neurocytol. 1980 Oct;9(5):591-602 PMID: 7192311
  28. Endocytosis of synaptic vesicle membrane at the frog neuromuscular junction.
    J Cell Biol. 1984 Feb;98(2):685-98 PMID: 6607255
  29. Cross-linking of actin filaments by heavy meromyosin.
    J Mol Biol. 1979 Oct 9;133(4):549-56 PMID: 395315
  30. The structure of cytoplasm in directly frozen cultured cells. I. Filamentous meshworks and the cytoplasmic ground substance.
    J Cell Biol. 1984 Nov;99(5):1655-68 PMID: 6436253
  31. Fine structure of dendritic and axonal growth cones in embryonic chick spinal cord.
    J Comp Neurol. 1974 Jan 15;153(2):107-47 PMID: 4810722
  32. Studies on the developing cerebellum. Ultrastructure of the growth cones.
    J Comp Neurol. 1968 Jul;133(3):341-62 PMID: 5710962
  33. Immunocytochemical evidence for colocalization in neurite growth cones of actin and myosin and their relationship to cell--substratum adhesions.
    Dev Biol. 1981 Jul 15;85(1):113-22 PMID: 7018957
  34. Structural proteins in the growth cone of cultured spinal cord neurons.
    Exp Cell Res. 1981 Feb;131(2):345-52 PMID: 6894123
  35. Lectin labeling of sprouting neurons. I. Regional distribution of surface glycoconjugates.
    J Cell Biol. 1981 Jun;89(3):536-46 PMID: 7251664
  36. Guiding growth cones.
    Cell. 1981 May;24(2):279-80 PMID: 7237547
  37. Isolation and properties of actin, myosin, and a new actinbinding protein in rabbit alveolar macrophages.
    J Biol Chem. 1975 Jul 25;250(14):5696-705 PMID: 124734
  38. Initial endocytosis of perioxidase or ferritin by growth cones of cultured nerve cells.
    J Neurocytol. 1977 Aug;6(4):407-39 PMID: 894333
  39. Fine structure of growth cones in medullary raphe nuclei in the postnatal cat.
    Brain Res. 1976 Jan 23;101(3):411-25 PMID: 1244983
  40. Ultrastructure of growth cones in the cerebellar cortex of the neonatal rat and cat.
    Z Zellforsch Mikrosk Anat. 1971;115(2):284-98 PMID: 4102325
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1985-10-00
Pages
1473-80
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2113941
Subset
IM
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