Studies on the mechanisms of neurulation in the chick: Interrelationship of contractile proteins, microfilaments, and the shape of neuroepithelial cells
- 1 August 1985
- journal article
- research article
- Published by Wiley in Journal of Experimental Zoology
- Vol. 235 (2) , 205-215
- https://doi.org/10.1002/jez.1402350207
Abstract
Electron microscopy and indirect immunofluorescence were employed to correlate the distribution patterns of major contractile proteins (actin and myosin) with 1) the organizational state of microfilaments, 2) the apical cell surface topography, 3) the shape of the neuroepithelial cells, and 4) the degree of bending of the neuroepithelium during neurulation in chick embryos at Hamburger and Hamilton stages 5–10 of development. Both actin and myosin are present at these developmental stages and colocalize in the neural plate as well as in later phases of neurulation. During elevation of neural folds, actin‐ and myosin‐specific fluorescence is always most intense in regions where the greatest degree of bending of the neuroepithelium takes place [e.g., the midline of the V‐shaped neuroepithelium (early neural fold stage) and the midlateral walls of the “C”‐shaped neuroepithelium (mid–neural‐fold stage)]. This intense fluorescence coincides with 1) a particularly dense packing of microfilaments and 2) highly constricted cell apices. After neural folds make contact, there is an overall reduction in both the intensity of apical fluorescence and the thickness of apical microfilament bundles, especially in the roof and floor of the neural tube. The remaining fluorescence in the contact area is apparently related to cellular movements during fusion of neural folds.This publication has 23 references indexed in Scilit:
- Studies on the mechanism of neurulation in the chick: Microfilament‐mediated changes in cell shape during uplifting of neural foldsJournal of Experimental Zoology, 1980
- Ultrastructural studies of amphibian neural fold fusionDevelopmental Biology, 1978
- The role of extra cellular material in chick neurulation. II. Surface morphology of neuroepithelial cells during neural fold fusionJournal of Experimental Zoology, 1978
- The role of extracellular material in chick neurulation. I. Effects of concanavalin AJournal of Experimental Zoology, 1976
- Effect of cytochalasin B on interkinetic nuclear migration in the chick embryoDevelopmental Biology, 1974
- Cytoplasmic filaments and morphogenetic movement in the amphibian neural tubeDevelopmental Biology, 1967
- The fine structure of the embryonic mouse neural tube with special reference to cytoplasmic microtubulesDevelopmental Biology, 1966
- A note on the mechanisms of cell deformation in the neural folds of the amphibiaExperimental Cell Research, 1966
- The regulative capacity of the node regionJournal of Experimental Zoology, 1960
- Decline in regenerative capacity of the Platypoecilus maculatus gonopodium during its morphogenesisJournal of Morphology, 1947