The organization of myosin and actin in rapid frozen nerve growth cones.
Open Access
- 1 January 1989
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 108 (1), 95-109
- https://doi.org/10.1083/jcb.108.1.95
Abstract
Rapid freezing and freeze substitution were used in conjunction with immunofluorescence, whole mount EM, and immunoelectron microscopy to study the organization of myosin and actin in growth cones of cultured rat superior cervical ganglion neurons. The general cytoplasmic organization was determined by whole mount EM; tight microfilament bundles formed the core of filopodia while a dense meshwork formed the underlying structure of lamellipodia. Although the central microtubule and organelle-rich region of the growth cone had fewer microfilaments, dense foci and bundles of microfilaments were usually observed. Anti-actin immunofluorescence and rhodamine phalloidin staining of f-actin both showed intense staining of filopodia and lamellipodia. In addition, staining of bundles and foci were observed in central regions suggesting that majority of the microfilaments seen by whole mount EM are actin filaments. Anti-myosin immunofluorescence was brightest in the central region and usually had a punctate pattern. Although less intense, anti-myosin staining was also seen in peripheral regions; it was most prominent at the border with the central region, in portions of lamellipodia undergoing ruffling, and in spots along the shaft and at the base of filopodia. Immunoelectron microscopy of myosin using postembedment labeling with colloidal gold showed a similar distribution to that seen by immunofluorescence. Label was scattered throughout the growth cone, but present as distinct aggregates in the peripheral region mainly along the border with the central region. Less frequently, aggregates were also seen centrally and along the shaft and at the base of filopodia. This distribution is consistent with myosins involvement in the production of tension and movements of growth cone filopodia and lamellipodia that occur during active neurite elongation.This publication has 34 references indexed in Scilit:
- Temperature control in Lowicryl K4M and glycol methacrylate during polymerization: is there a low‐temperature embedding method?Journal of Microscopy, 1986
- Microtubules and the endoplasmic reticulum are highly interdependent structures.The Journal of cell biology, 1986
- The structure of cytoplasm in directly frozen cultured cells. II. Cytoplasmic domains associated with organelle movements.The Journal of cell biology, 1986
- Multiple forms of Acanthamoeba myosin I.Journal of Biological Chemistry, 1979
- Studies on the organization and localization of actin and myosin in neurons.The Journal of cell biology, 1979
- Polarity of actin at the leading edge of cultured cellsNature, 1978
- Myosin: Immunofluorescent Localization in Neuronal and Glial CulturesScience, 1978
- Cell to substratum contacts of chick fibroblasts and their relation to the microfilament system. a correlated interference-reflexion and high-voltage electron-microscope studyJournal of Cell Science, 1978
- Possible roles for cell-to-substratum adhesion in neuronal morphogenesisDevelopmental Biology, 1975
- Human platelet myosin. I. Purification by a rapid method applicable to other nonmuscle cellsAnalytical Biochemistry, 1974