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1.
Braz. j. med. biol. res ; 32(5): 529-38, May 1999.
Article Dans Anglais | LILACS | ID: lil-233471

Résumé

The distribution and structure of heparan sulfate and heparin are briefly reviewed. Heparan sulfate is a ubiquitous compound of animal cells whose structure has been maintained throughout evolution, showing an enormous variability regarding the relative amounts of its disaccharide units. Heparin, on the other hand, is present only in a few tissues and species of the animal kingdom and in the form of granules inside organelles in the cytoplasm of special cells. Thus, the distribution as well as the main structural features of the molecule, including its main disaccharide unit, have been maintained through evolution. These and other studies led to the proposal that heparan sulfate may be involved in the cell-cell recognition phenomena and control of cell growth, whereas heparin may be involved in defense mechanisms against bacteria and other foreign materials. All indications obtained thus far suggest that these molecules perform the same functions in vertebrates and invertebrates


Sujets)
Animaux , Phénomènes physiologiques cellulaires , Héparine , Héparitine sulfate , Glycosaminoglycanes , Héparine/physiologie , Héparitine sulfate/biosynthèse , Héparitine sulfate/physiologie , Invertébrés , Mollusca , Vertébrés
2.
Braz. j. med. biol. res ; 29(9): 1221-6, Sept. 1996. ilus, graf
Article Dans Anglais | LILACS | ID: lil-186129

Résumé

The synthesis of glycosaminoglycans and acidic polysaccharides during embryonic and fetal development in mammals and molluscs is briefly reviewed. A sequential order of appearance of each of the acidic polysaccharides was observed, coinciding with the major processes of the ontogeny. In mammals, hyaluronic acid is the first glycosaminoglycan synthesized at the beginning of morphogenesis. This glycosaminoglycan is then replaced by chondroitin 6-sulfate during the migration of the mesenchymal cells. Heparan sulfate, dermatan sulfate and chondroitin 4-sulfate are synthesized only during cell differentiation. The synthesis of heparin, on the other hand, is confined to mast cells in a few tissues and is a late event in the differentiation process. The same general pattern is also observed in molluscs except that hyaluronic acid is replaced by an acidic galactan in the morphogenetic process. The activity of the degrading enzymes responsible for the disappearance of hyaluronic acid, chondroitin sulfate and the acidic galactan in each phase of embryonic development is also reviewed.


Sujets)
Animaux , Chondroïtines sulfate/biosynthèse , Chondroïtine sulfate B/biosynthèse , Héparine/biosynthèse , Héparitine sulfate/biosynthèse , Acide hyaluronique/biosynthèse , Morphogenèse/physiologie , Glycosaminoglycanes/biosynthèse , Mammifères/croissance et développement , Mollusca/croissance et développement
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