Developmentally regulated plasmalemmal glycoconjugates of the surface and neural ectoderm
The plasmalemmal glycoconjugates of the ectoderm surrounding the rat embryo's caudal neuropore were mapped at the ultrastructural level, using various lectin probes. These included the agglutinins of wheat germ, soybean, Ricinus communis, Lotus tetragonolobus, and Canavalia ensiformis. Each lec...
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Published in | Developmental biology Vol. 106; no. 1; pp. 109 - 120 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
01.01.1984
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Abstract | The plasmalemmal glycoconjugates of the ectoderm surrounding the rat embryo's caudal neuropore were mapped at the ultrastructural level, using various lectin probes. These included the agglutinins of wheat germ, soybean,
Ricinus communis, Lotus tetragonolobus, and
Canavalia ensiformis. Each lectin produced a characteristic binding pattern. Comparison of precursor cells of surface ectoderm, neural crest, and neural tube revealed that, even prior to neural tube formation, these three cell types can be distinguished by the sets of lectin receptors they express on their apical plasmalemma. The high density of lectin receptors found at the open neural groove level decreases dramatically during neurulation. Further changes in surface glycoconjugates must occur during neuronal differentiation because sprouting neurons exhibit yet another lectin binding pattern (
K. H. Pfenninger, M.-F. Maylié-Pfenninger, L. B. Friedman, and P. Simkowitz, 1984,
Dev. Biol.
106, 97–108). These results indicate that the commitment of ectodermal cells to diverging lineages (epidermis, neural crest, and tube) is reflected in their surface carbohydrates and occurs while they are still part of a continuous epithelial sheet. Furthermore, the plasmalemmal glycoconjugates of the ectoderm are developmentally regulated, and particularly dramatic changes in glycoconjugate expression are linked to neurulation. |
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AbstractList | The plasmalemmal glycoconjugated of the ectoderm surrounding the rat embryo's caudel neuropore were mapped at the ultrastructural level, using various lectin probes. These included the agglutinins of wheat germ, soybean, Ricinus communis, Lotus tetragonolobus , and Canavalia ensiformis . Each letin produced a characteristic binding pattern. Comparison of precursor cells of surface ectoderm, neural crest, and neural tube revealed that, even prior to neural tube formation, these three cell types can be distinguished by the sets of lectin receptors they express on their apical plasmalemma. The high of lectin receptors found at the open neural groove level decreases dramatically during neurulation. The results indicate that the commitment of ectodermal cells to diverging lineages (epidermis, neural crest, and tube) is reflected in their surface carbohydrates and occurs while they are still part of a continuous epithelial sheet. The plasmalemmal glycoconjugates of the ectoderm surrounding the rat embryo's caudal neuropore were mapped at the ultrastructural level, using various lectin probes. These included the agglutinins of wheat germ, soybean, Ricinus communis, Lotus tetragonolobus, and Canavalia ensiformis. Each lectin produced a characteristic binding pattern. Comparison of precursor cells of surface ectoderm, neural crest, and neural tube revealed that, even prior to neural tube formation, these three cell types can be distinguished by the sets of lectin receptors they express on their apical plasmalemma. The high density of lectin receptors found at the open neural groove level decreases dramatically during neurulation. Further changes in surface glycoconjugates must occur during neuronal differentiation because sprouting neurons exhibit yet another lectin binding pattern ( K. H. Pfenninger, M.-F. Maylié-Pfenninger, L. B. Friedman, and P. Simkowitz, 1984, Dev. Biol. 106, 97–108). These results indicate that the commitment of ectodermal cells to diverging lineages (epidermis, neural crest, and tube) is reflected in their surface carbohydrates and occurs while they are still part of a continuous epithelial sheet. Furthermore, the plasmalemmal glycoconjugates of the ectoderm are developmentally regulated, and particularly dramatic changes in glycoconjugate expression are linked to neurulation. The plasmalemmal glycoconjugates of the ectoderm surrounding the rat embryo's caudal neuropore were mapped at the ultrastructural level, using various lectin probes. These included the agglutinins of wheat germ, soybean, Ricinus communis, Lotus tetragonolobus, and Canavalia ensiformis. Each lectin produced a characteristic binding pattern. Comparison of precursor cells of surface ectoderm, neural crest, and neural tube revealed that, even prior to neural tube formation, these three cell types can be distinguished by the sets of lectin receptors they express on their apical plasmalemma. The high density of lectin receptors found at the open neural groove level decreases dramatically during neurulation. Further changes in surface glycoconjugates must occur during neuronal differentiation because sprouting neurons exhibit yet another lectin binding pattern (K.H. Pfenninger, M.-F. Maylié-Pfenninger, L. B. Friedman, and P. Simkowitz, 1984, Dev. Biol. 106, 97-108). These results indicate that the commitment of ectodermal cells to diverging lineages (epidermis, neural crest, and tube) is reflected in their surface carbohydrates and occurs while they are still part of a continuous epithelial sheet. Furthermore, the plasmalemmal glycoconjugates of the ectoderm are developmentally regulated, and particularly dramatic changes in glycoconjugates expression are linked to neurulation. |
Author | Currie, Julia R. Maylié-Pfenninger, Marie-France Pfenninger, Karl H. |
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Cites_doi | 10.1083/jcb.89.3.536 10.1002/jss.400080107 10.1016/0014-4827(71)90217-5 10.1016/0045-6039(74)90001-3 10.1016/S0021-9258(17)30236-3 10.1016/0012-1606(84)90066-6 10.1146/annurev.bi.42.070173.002545 10.1021/bi00523a037 10.1016/S0079-6123(08)61294-7 10.1016/0092-8674(83)90191-5 10.1016/S0021-9258(19)83586-X 10.1083/jcb.80.1.69 10.1083/jcb.86.1.96 10.1083/jcb.76.3.628 10.1523/JNEUROSCI.01-10-01075.1981 10.1038/282853a0 |
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Ser contributor: fullname: Waterman – start-page: 373 year: 1978 ident: 10.1016/0012-1606(84)90067-8_BIB13 article-title: Characterization, distribution and appearance of surface carbohydrates on growing neurites contributor: fullname: Pfenninger – start-page: 589 year: 1980 ident: 10.1016/0012-1606(84)90067-8_BIB16 article-title: Differentiation in the neural system studied with fluorescent lectins: neural crest of avian embryos contributor: fullname: Rapin |
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Snippet | The plasmalemmal glycoconjugates of the ectoderm surrounding the rat embryo's caudal neuropore were mapped at the ultrastructural level, using various lectin... The plasmalemmal glycoconjugated of the ectoderm surrounding the rat embryo's caudel neuropore were mapped at the ultrastructural level, using various lectin... |
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SubjectTerms | Animals Concanavalin A - metabolism Ectoderm - cytology Female lectins Lectins - metabolism Microscopy, Electron neural tube Neurons - cytology Plant Lectins plasma membranes Pregnancy Rats Rats, Inbred Strains Receptors, Mitogen - metabolism Ricin - metabolism Soybean Proteins Wheat Germ Agglutinins |
Title | Developmentally regulated plasmalemmal glycoconjugates of the surface and neural ectoderm |
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