Literature DB >> 2619093

The binding pattern of peanut lectin associated with sclerotome migration and the formation of the vertebral axis in the chick embryo.

K M Bagnall1, E J Sanders.   

Abstract

Lectins have been used extensively to detect changes in carbohydrate moieties on the surfaces of embryonic cells during early development. Peanut agglutinin (PNA) in particular has been used to investigate changes related to cell differentiation. PNA has also been used to differentiate between the rostral and caudal sclerotome halves which have been shown to be functionally different, with neural crest cells and neurites traversing only the rostral half during their migration. In this study, we have sectioned and stained chick embryos between 3 and 8 days of age with PNA to examine the distribution of PNA binding sites associated with the vertebral column during this period and also to determine the fates of the rostral and caudal sclerotome halves. Ultrastructural localisation of PNA-gold conjugate showed that binding sites for this lectin were present intracellularly and extracellularly both on cell surfaces and in the matrix. At the light microscope level, a clear banding pattern emerged after staining with PNA which consisted of alternating light and dark staining along the entire length of the vertebral axis of the embryo. In the younger embryos, a simple banding pattern emerged where the rostral sclerotome half of each segment stained only lightly while the caudal half stained darkly. This banding pattern was present throughout the 6 day period of development and could be traced continuously but grew more complex as the sclerotome cells migrated to surround the notochord and neural tube and as the dorsal root ganglia developed. The rostral sclerotome half was found to contribute to the caudal part of one vertebral body and its neural arch, while the caudal sclerotome half was found to contribute to the intervertebral disc, the rostral half of the next caudal vertebra, and part of its neural arch.

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Year:  1989        PMID: 2619093     DOI: 10.1007/bf00305126

Source DB:  PubMed          Journal:  Anat Embryol (Berl)        ISSN: 0340-2061


  15 in total

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Authors:  E C SENSENIG
Journal:  Contrib Embryol       Date:  1949-02

2.  Cell surface carbohydrate involvement in controlling the adhesion and morphology of neural crest cells and melanophores of Xenopus laevis.

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Review 3.  Cytochemistry of the cell surface and extracellular matrix during early embryonic development.

Authors:  E J Sanders
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Authors:  R O'Rahilly; D B Meyer
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5.  Alterations of lectin binding during chondrogenesis of mouse limb buds.

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Authors:  M Rickmann; J W Fawcett; R J Keynes
Journal:  J Embryol Exp Morphol       Date:  1985-12

7.  Changes in peanut lectin binding sites on the neuroectoderm during neural tube formation in the bantam chick embryo.

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Journal:  Anat Embryol (Berl)       Date:  1988

8.  Peanut lectin receptors in the early amphibian embryo: regional markers for the study of embryonic induction.

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10.  A phosphatidylinositol-linked peanut agglutinin-binding glycoprotein in central nervous system myelin and on oligodendrocytes.

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  19 in total

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6.  Differentiation of the chick embryo floor plate.

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7.  Chondrogenic cell subpopulation of chick embryonic calvarium: isolation by peanut agglutinin affinity chromatography and in vitro characterization.

Authors:  E Stringa; R S Tuan
Journal:  Anat Embryol (Berl)       Date:  1996-11

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9.  Deletion of Tgfbr2 in Prx1-cre expressing mesenchyme results in defects in development of the long bones and joints.

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10.  Kinetics and differentiation of somite cells forming the vertebral column: studies on human and chick embryos.

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